jeudi 25 septembre 2008

Tatiana Hlukhava-Kasperski: The Chernobyl Nuclear Accident and the Identity Strategies in Belarus.


The collapse of the Soviet Union coincided with and was precipitated by the public revelation of the true scale of the Chernobyl nuclear accident. The Republic of Belarus was forced to manage the consequences of its territories’ substantial radioactive contamination along with the strong popular dissent that resulted from the three-year cover-up of the true consequences, and the political and economic transformations provoked by the dissolution of the Soviet Union, all at the same time. The contentious nationalist movement, represented mainly by the Belarusian Popular Front (BPF), challenged the Belarusian governing elite, which was fated to undergo political changes it didn’t aspire to. The challenger’s political and cultural claims received considerable popular support in the period of 1988 – 1991, mostly because the BPF was perceived as the political force that put an end to the dissimulation of the Chernobyl accident’s outcome and the dangers inhabitants of the contaminated areas and liquidators incurred.
Nevertheless, Belarusian separatist nationalists didn’t come to power. Marc Beissinger states they “failed mobilizationally but succeeded substantially”.[1] In other words, their demands for sovereignty from the USSR and the adoption of Belarusian as the state language were satisfied, but State authorities were the ones who obtained “the control of the success of nationalism” [2] by co-opting the main contentious demands. Thus, independence was mainly achieved through the strong influence of the external developments that made it unavoidable. The country became involved in the process of nationalization, democratization and market opening. These costly reforms would add to the enormous expenditures caused by the relocation of the population from the contaminated areas, the payment of compensations to the Chernobyl victims and the economic losses caused by the radioactive contamination. The reforms were then rapidly abandoned, and an authoritarian regime was progressively instituted after Alexander Lukashenka’s arrival to power in 1994 on the issue of the first democratic presidential elections in Belarus.
Keeping in mind the complexity of the political and economic transformations after independence and during the rule of Alexander Lukashenka, we’ll firstly focus on the connections between the management and the perception of the consequences of the Chernobyl disaster. Secondly, we’ll discuss the nationalization policies engaged by the governing elite and contentious actors. Those policies correspond to what Rogers Brubaker called “the forms of nationalism that have resulted from the nationalization of political space”, and “are different from – and less familiar than – those that helped engender it”.[3] Both the State officials and their challengers tried to impose their nationalization projects to the new independent Belarus, praising their visions of national identity and the related political order that came with it. By doing so they were seeking to legitimize their authority or aspirations to power in the new institutional and political framework.
We will be analyzing these national identity strategies, focusing on the representations they constructed of the Chernobyl Nuclear disaster in an attempt to promote the sense of belonging to the Belarusian “imagined community”.[4]
Nation here is not to be understood as a real substantive entity, but as institutionalized form, practical and cognitive category[5], symbol[6]. Identity is here considered not as an intrinsic quality or a stable definition of something bounded, well-defined, homogeneous but as a process.[7] This process “includes many voices and varying degrees of understanding and, importantly, misunderstanding. It produces ceaseless changes, because even “to talk about identity is to change or construct it, despite the dominant epistemology of identity, which specifies immutability”[8] This understanding of nation and of national identity conduces us to consider the identity strategies engaged by the main Belarusian political actors, not only as an attempt to define the national community, but also as a form of establishing their “control over the imagination about community”[9] as Mark Beissinger suggests in his analysis of nationalism.
What are the national identity projects promoted by the main Belarusian political actors? How do they try to translate those identity representations into practices and institutions? What is the role of the collective memory of the Chernobyl disaster in these identity strategies? To answer these questions we’ll describe the characteristics of the Belarusian national community, imagined by State officials and contentious actors, and expressed through symbols, rituals, and narratives of different historical events that stigmatize enemies and glorify heroes. While examining the narratives of the Chernobyl disaster in the framework of two identity projects, we’ll focus on the mechanisms of description of “us” and “them”. The use of such terms creates imaginary frontiers for the community, and emphasizes the similarities between community members and their differences with non-members. The construction of enemies and threats will be one of the possible definitions of this otherness. We’ll also highlight the articulation of the past, present and future of the Belarusian community as it appears in the discourses of the Chernobyl disaster and its consequences.
Our analysis will focus mostly on the period from 1994 to the present. In fact, the Chernobyl disaster first became part of the nationalist discourses of the political forces contesting communist rule on the eve of the Soviet Union collapse. The official state discourse on Chernobyl disaster, and its role for the Belarusian people/nation, began to take shape after Alexander Lukashenka arrival to power in 1994.

Belarusian national community…

A … in official discourse and practices

1) Common past “from Great Patriotic War to the collapse of the Soviet Union”

In his discourse for the 60th anniversary of the victory in World War II, the Belarusian president summarized the official version of the common destiny of the Belarusian people: “we experienced three disasters during the last century: namely, the Grand Patriotic War, the Chernobyl tragedy and the collapse of the country – the Soviet Union”.[10] Thus, within the framework of the official Chernobyl discourse, the disaster is depicted as an unforeseen misfortune, which caused considerable losses to Belarusian people and is likened to two other national traumas: World War II and the collapse of the Soviet Union. Overcoming these miseries and restoring all the benefits the Belarusians had under Soviet rule is considered by the present-day Belarusian authorities as an important social and political goal.
The parallel established between the Chernobyl disaster and World War II is extremely important to understand the official national identity strategy of the Lukashenka regime. The memory of the “Great Patriotic War” is the main pillar of the historical narrative this official identity project is based upon.
During the Soviet period, the Communist Party created, as Nina Tumarkin describes in detail, a “full-blown cult of the Great Patriotic War, including a panoply of saints, sacred relics, and rigid master narrative of the war”. [11] This cult had a particular influence in Belarus where a very important partisan movement struggling against the invader was developed. Belarus also suffered the greatest destruction and losses. This explains a very strong Belarusian attachment, particularly in older generations, to the Soviet values and symbols. After his arrival to power, Lukashenka utilized this narrative to confirm his authority’s legitimacy. Lukashenka presented himself as the main defender of the sacred memory of the heroic exploit of the Belarusian people against all those who try to depreciate it. Thus, the cult of War was maintained and even reinforced under Lukashenka’s rule. The victory in the War is commemorated as a foundation myth of the Belarusian national community and serves to glorify the Soviet system and the principles and values upon which it was based.
Comparisons between Chernobyl and the Great Patriotic War are often present both in personal retellings of the event and in the official discourse. They contribute a great deal to the insertion of Chernobyl in the official historical pro-soviet narrative framed in terms of tragic catastrophes that became glorious victories through heroic exploits. Lukashenka suggested perceiving Chernobyl disaster as another battlefront for Belarusian nation which will unavoidably come out victorious, united and regenerated. By doing so, Lukashenka progressively achieved to supplant the anti-soviet contentious nationalists’ interpretation of the disaster, which was based upon the popular anger triggered by the pro-soviet frame cover-up of the accident, using the references to the Soviet past as a proof of the upcoming revival of the Chernobyl lands.

2) Common present and future: revival of the Chernobyl lands

The commemoration of the Chernobyl disaster is usually an occasion to depict a very positive image of the common present and future of the Belarusian people. Once elected, Alexander Lukashenka suggested a new approach to managing the Chernobyl disaster consequences, which broke the previous state policies in this area. The measures taken in the early 90’s were now considered too brutal and alarmist. The new policy aimed at solving two problems: the depopulation of the contaminated areas and the abandonment of vast agricultural lands. Hence the official discourse began to actively promote the recovery of the affected areas and the return of the people to these lands. This new policy was framed in terms of revival and consolidation of the Belarusian people in the heroic reconstruction of the injured homeland.
This shift in discourse and in policies allowed the government to break the deadlock in the management of the Chernobyl disaster consequences. Indeed, the State turned out to be incapable of providing relocated people with decent life conditions or paying the compensations to the inhabitants of the contaminated areas and to other victims of the accident. In fact, the budget expenditures dedicated to managing the Chernobyl consequences between 1991 and 1995 were less than 15% of the total amount of the social and economic damages provoked by the disaster at the same period.[12]
Alexander Lukashenka succeeded in supplying a positive interpretation of this State impotency by suggesting the country should not passively undergo the disaster consequences or admit losses in land, housing and employment. Instead, Belarus would have to overcome the tragedy and become the master of the situation. By doing so, the president aimed at establishing himself as a strong, proactive leader capable of consolidating the people and performing what his predecessors had failed to achieve: the overcoming of the disaster and the reconstruction of the national community. Neglecting the multiple risks of living and working in contaminated areas was the underside of this new approach..
For this new policy as well as for the official identity and memory strategy, revival became the watchword. Keeping his habit of highlighting the success of his policies, President Lukashenka confessed, on April 26, 2005, during his traditional trip to the affected “If someone had asked me 10 years ago whether we would manage to do so much I would not have believed we could. But the people did a lot assisted by the government”.[13] He was thus convinced that “in 20-30 years the damaged lands will be revived to be no worse than they used to be before the Chernobyl tragedy”.[14]
This revival rhetoric contributes not only to justify the decreasing expenditures on the post-accidental policies and the negation of the risks related to the recovery of the contaminated areas but also to maintain and to legitimize the very paternalist and populist style of government Lukashenka regime is based upon. Thus, Belarusian officials constantly emphasize governmental and personal presidential concern for every victim of the Chernobyl disaster. The authorities’ attitude towards the inhabitants of the contaminated regions is depicted by the official mass-media in very emotional terms. Their description bears more resemblances to parental child care than to the implementation of a public policy by State institutions.

A bit of attention is the best possible support to anybody who has got in trouble through no fault of his. If the people around you sympathise with your difficulties, try sincerely to help you overcome them, the latter don’t seem so hopeless anymore. In their support of the « chernobylians » the authorities have adopted this very attitude : no to shed tears because of what happened. Unfortunately, this won’t change anything. But to help to do all possible to make the living in the affected districts as good and decent as in the rest of the country. The more especially as two decades after the nature itself helps us to overcome the Chernobyl disaster.[15]

Belarusian president is depicted as taking to heart all the Chernobyl victims’ difficulties, and all the State activities related to the management of the disaster’s consequences are accomplished under “personal patronage of the president”. His annual April trip to the contaminated areas has become a political ritual that aims at demonstrating his dedication to Belarusian people and the crucial role of his political will in overcoming the Chernobyl consequences. The following excerpt from the official description of these trips is illustrative:

Every April the residence of the Belarusian President moves to Polesye. The inhabitants are eagerly anticipating Alexander Lukashenka’s visit since it is a chance for them to directly transmit their concerns to the head of State, show their achievements and point to their problems. These visits are even more important for the residents of the contaminated towns and villages because the President’s trips are followed by crucial solutions and concrete measures which really improve the situation.[16]


B… in opposition discourse and practices

1) Common past: national community oppressed during the Soviet period.

Unlike the official discourse on the glorious soviet past of the Belarusian people the challengers of the Lukashenka regime depict the Soviet period as a tragic and gloomy interlude in the national Belarusian history. During the commemoration of the Chernobyl disaster anniversary the contentious forces aim at highlighting the existence of a national Belarusian community rooted in the ancient history, which goes back long before the Soviet period. The Chernobyl disaster representations are part of the past contentious nationalist tale articulated around the celebration of the glorious moments in the national Belarusian history and the tragedies the community experienced.
The historical moments put forward by the challengers of the Belarusian regime are most often related to the periods when Belarusians had the premises of their own distinct culture or state structures. The Great Duchy of Lithuania is therefore seen as a sort of golden age for the Belarusian nation. This historical period is mostly appreciated for the principles of government adopted by the political elite and the role played by the society of the time, transforming it into the symbol of both the rule of law and the society control over the government.
Another important contentious nationalist memory site is the proclamation of the Belarusian People’s Republic on 25, March 1918 during the World War I when the territory of Belarus was occupied by the German troops according to the Treaty of Brest-Litovsk. It ceased to exist since Belarus was taken under Soviet control when the Red Army arrived and the Belarusian Soviet Socialist Republic was founded in 1919. The government or the Rada (council) of the BPR went to exile and still exists. This short State experience has nevertheless a very important symbolic significance and is considered by the contentious nationalists as a glorious moment of nation-building history which obliged the Soviets to create the distinct State entity - Byelorussian Socialist Soviet Republic.
This long and glorious pre-soviet and anti-soviet history of the Belarusian national community is often highlighted during the contentious rallies and demonstrations including the annual commemoration of Chernobyl disaster. Thus, the use of both the three-striped flag – white-red-white – and the coat of arms Pahonia (which can be translated as Chaser) is a symbolic means to evoke this centuries-old glorious past. Their own history, say the contentious nationalists, is closely related to the history of the GDL and the BPR.[17]
The religious references, commonly found in opposition discourses on Chernobyl, and the religious symbols, often used during the opposition commemoration rallies, also contribute to emphasize the traditional Belarusian communities’ values break-away from soviet atheism.
The losses and tragedies experienced by the national community throughout its history is another important part of the collective memory mobilised by the contentious identity project. The negative historical symbols seem to assume higher importance for the identity strategies developed apropos the Chernobyl disaster.
The Chernobyl disaster is depicted as one of the of the Soviet system crimes against the Belarusian national community, repressed for many centuries by successive imperial authorities when it finally had a new chance for its revival after independence. The sufferings endured by the Belarusian people are emphasized in order to unify the national community. This victimization identity strategy can be identified through the frequent use of the term “genocide” in the nationalist rhetoric of the opposition forces.[18] Besides serving as a description of the Stalinist repressions period “genocide” is also associated with all the other major events in the last three centuries of the Belarusian history: the war between Muscovy and the Great Duchy of Lithuania in 1654-1667, the annexation of the Belarusian lands by the Russian Empire after three partitions of the Poland in 1772, 1791 and 1794, the policy of russification, the World War I, the October Revolution, the collectivisation, the Stalinism, the World War II, the Brezhnev period and the Chernobyl Disaster.[19] Furthermore, genocide, in this context, means not only the physical destruction of the Belarusian population, but also the destruction of the Belarusian language and culture (cultural genocide) and the use of the ecological disaster caused by the explosion on the Chernobyl Nuclear Plant against the country’s population (radio-genocide).
Thus, the interpretations of the Chernobyl disaster suggested by the contentious nationalists put forward the confrontation between communist criminal authorities described as colonizers and the Belarusian nation-victim, which endures the consequences of the disaster as an ultimate test of its survival capacity and unity, a test that contains a strong mystical and religious sense.
This national interpretation of the history appears through the parallel which is drawn between the Chernobyl disaster and the mass grave site of Kurapaty. Since its public revelation in June 1988, Kurapaty, a grave site where more than a hundred thousand bodies slaughtered by the NKVD between 1937 and 1941were discovered, has became the symbol of the Stalinist and Soviet repressions against the Belarusian people. This site of mass murder became an important memory site for the political movement contesting communist regime, and later for Lukashenka regime itself, considered the follower of the worst Soviet traditions. The commemoration of the dead is organized in Kurapaty several times during the year, especially at the end of October - beginning of November, on Dziady (All Saint’s Day) which was initially a traditional popular ritual of commemoration of ancestors.
Furthermore, Kurapaty and Chernobyl are now commemorated as the two Belarusian national tragedies which caused an important national uprising against criminal authorities in the late 80’s and early 90’s. This protest movement led the country to its independence and is now perceived by the contentious nationalists as proof of the vitality of the national community which was repressed for a considerable amount of time. It is also symbolic of the people’s indignation towards the authorities that have violated their rights to freedom, to culture and to the protection of life and health.
This martyr community, however, was not able to fully enjoy the opportunity for its fulfilment gained after the independence due to the instauration of the authoritarian rule after Alexander Lukashenka’s arrival to power in 1994. According to the opposition, the Lukashenka regime became a «political Chernobyl» for the Belarusian nation.

2) Common present: Lukashenka regime as political Chernobyl

In contrast with the optimistic vision of the official Chernobyl lands’ revival, the opposition refers to a political Chernobyl to qualify the regime instituted by President Alexander Lukashenka.
In his speech, delivered on the occasion of the 20th anniversary of the Chernobyl disaster, Alexander Milinkevich, opposition candidate for the presidential elections of March 2006, declared: “ The tragedy that happened 20 years ago could have consolidated the nation in the name of the future”. Yet, ten years after the disaster a coup d’état occurred which led us to another disaster, probably even more serious – a true spiritual and political Chernobyl[20]».
According to those who contest the Lukashenka regime, the current Belarusian authorities do nothing but continue the soviet crimes: the real dangers of the radio-active contamination are kept secret, the contaminated areas are officially declared as clean and are intensely farmed, the young employees and experts are sent there against their will, especially in the framework of the first compulsory job assignment after the university. Some categories of the affected populations were even deprived of certain privileges they were given in the early 90’s to indemnify the damages caused by the Chernobyl disaster.
Thus, Chernobyl remains essentially a political problem which can be solved only through the country’s democratization and the destitution of a regime based on violence and lies. The frame “Political Chernobyl” is therefore used as a metaphor to describe the current political situation of the country: the repressions against the opposition, the violation of human rights, and the break of political and economic freedom.

I. Belarusian Community’s “others” and threats…

A… in official discourse and practices

1) Invisible enemy and the threat of disappearance.

The official discourse on the Chernobyl lands’ revival is far from being incompatible with the ceaseless recall of the dangers threatening the people. The references to the threats related to the Chernobyl consequences is another symbolic means to imagine the community of people united by the necessity to protect themselves. What is silenced is not the threat itself, but the political responsibilities for putting in danger the inhabitants of the contaminated areas. Instead, the Chernobyl lands’ rehabilitation policy is described as a fatality or even a proof of courage and heroism. The policies of the early 90’s that led to the depopulation of the affected areas are presented as lacking lucidity, good sense and resoluteness in the critical situation. So long as the living on contaminated areas is accepted as a fatality, evoking the radioactive danger serves to constantly emphasize the national community and the government’s heroic attitude which dared to keep a straight face to the threat.
Thus, the Chernobyl disaster consequences and the radioactive contamination presence are still framed in terms of an exterior enemy and a silent war against the Belarusian people even if the contaminated areas’ inhabitants have been dealing with them on a daily basis for more than 20 years. This war against an invisible and perfidious enemy requires the national community to be united and vigilant.
An article on the disaster’s 20th anniversary written by a journalist for the main newspaper, for example, reads:

A silent war, that caesium and strontium still continue to deliver against Belarusian people 20 years after the disaster. The first attack of the Chernobyl against our health – through radioactive isotopes of iodine – was sudden and short. Then, it was the heavy artillery which entered into the battle – i.e. caesium and strontium. Will we be able to strike back? [21]

This war frame serves some political objectives. It contributes to dissimulate the political responsibility for the accident and the management of its consequences. It helps maintaining an everyday power control over every individual through prescription of innumerable rules and norms of behaviour in the contaminated areas such as regular compulsory controlling of the internal contamination and state of health levels, and measurements of alimentary and environmental radioactivity. The issue of living on the contaminated areas is thus efficiently depoliticized, since the individuals themselves are held responsible for the state of their health, instead of the authorities which have done all their best informing the population on the risks and prescribing the rules. Thus, this interpretation of the Chernobyl disaster contributes to maintain a very paternalist and authoritarian management system of the Chernobyl disaster and to legitimate the current political regime.
Another way to describe the threats requiring constant society mobilisation under the direction of the authorities is the discourse on demographic crisis and the concern about «demographic security [22]». This preoccupation is regularly expressed in numerous speeches and has been translated into two national programs for demographic security. It is frequently reminded that the country’s population has been constantly decreasing since 1994, as a result of the strong mortality and low birth rates. Chernobyl-affected areas are the most threatened by depopulation. In 20 years, the Gomel region has lost about 9% of its inhabitants (150.6 thousands of persons), and the Moguilev region about 7% (88.1 thousands of persons). Thus, the Chernobyl disaster is indirectly associated with the possible decline or even disappearance of the Belarusian community, which has to mobilize immediately in reaction to this threat.
In an interview dedicated to the demographic problems in Belarus, the Belarusian vice- prime minister highlights that the demographic security is one of the main elements of the national security. Thus caring for one’s health and giving birth to children is a duty of every citizen toward the State and the people as a whole:

The children are not only the future of each family. They’re the real strategic resource for the State in the geopolitical space. For without citizens there is no country – nobody to protect it, nobody to create its GDP, to increase its scientific and cultural potential, nobody to support the old generation […] Many people have this not very serious attitude towards their health and the health of their children, towards their future […] We are constructing the State for the people, but the people also have to exist for the State. We’ll claim that people take care of their health. We won’t allow the citizens of the country to simply depart this life![23]

This demographic discourse shows a very technical and centralised management of the public health and demographic problems, where people’s life is primarily seen as a resource for the authorities and it is not appreciated for itself. It also highlights the policies encouraging the contaminated areas rehabilitation, which are based on the statistic comparison of the possible additional losses due to the harmful effects of the radiation on human beings and those provoked by the abandonment of the agricultural lands and industries in the contaminated areas.
From the evocation of external enemies and threats of the Belarusian people the official discourse easily proceeds to the stigmatisation of its internal enemies.

2) Opposition as an internal enemy

The threats related to the consequences of the Chernobyl disaster and the demographic problems are instrumentalized by the Belarusian authorities to legitimate the growing control over all spheres of the political and social life and the repressions against the opposition. Thus, those who protest against the regime and its post-accidental policies are accused of seeking to use the Chernobyl disaster to destabilize the Belarusian society, to provoke conflicts inside it and to prevent the government from helping Belarusian people to return to a normal life.
Commenting upon the protest commemoration of the Chernobyl disaster in April 2004 Belarusian president qualified its participants as hoodlums (otmorozky):

Is this an opposition? People called them by their right name, “hoodlums” (otmorozky), no one can’t say better. And, generally speaking, how is it possible to transform, say, the Chernobyl tragedy into the instrument splitting the society ? It can’t be logically explained. At all times the troubles have rallied people in Belarus. People get together to overcome it . Look what they are doing ! A political show, a performance based on human grief![24]


During his traditional annual trip to the contaminated regions Lukashenka often accused the opposition of impeding the State’s struggle against Chernobyl:

Lately, they are particularly aggressive about the new State’s approaches to the management of the Chernobyl disaster consequences and to the revival of Chernobyl lands. But our people can not accept this destructive attitude and show their love and their dedication to their homeland[25].


3) The rest of the world: between accusation and messianism

The way Belarussians define themselves in opposition to the rest of the world – i.e. the other countries and communities – form an important part of the Belarusian collective imagination framed by the official identity strategy. How do such representations appear in the Chernobyl discourse ? Firstly, the authorities usually emphasize the fact that Belarusians are those who suffered the hardest consequences from the Chernobyl disaster. “ The Belarusian Chernobylians are the most Chernobylian” – as summarized by a Belarusian researcher. [26] Thus, the representations of others are based on the belief that the whole world is indebted to the Belarusians who got the most important part of the fallouts and damages caused by the Chernobyl disaster. This national tragedy is also pictured as a source of national pride since Belarusians managed to hold out in this tremendous battle. The official discourse insists that Belarus did almost without any help from other countries. This is another important point in the way Belarussians represent themselves in opposition to other peoples.

While the world got engrossed in the debate about causes and guilt, Belarus, virtually alone, was trying to cushion the impact of the disaster. And the country held out[27]!

This frame that keeps on ignoring all the international help received by Belarus became a constant element of the official Chernobyl discourse and is used for different strategic purposes which influence identity representations. Thus it is sometimes used to highlight a kind of messianic role the Belarusian community has endorsed experiencing the most important accident of the world.
But the use of this frame mainly reveals the Belarusian’s’ definitions of their relationship with other countries, or more precisely the perception they have of Russia and the Western countries. The choice between Russian or Western vectors in Belarusian foreign policy constitutes the crucial geopolitical choice for the future of the country and has been fiercely discussed by different political forces since independence. Moreover, the geopolitical vector is the major indicator of the difference between the identity projects defended by Belarusian State and opposition forces.
Thus, the official identity project put forth in the references to Chernobyl disaster is characterized by the pro-russian and anti-western orientations.
The necessity to maintain a close relationship with Russia is a constant element of the Belarusian official discourse and is part of different forms of the official apologetics of the Soviet past and of the historical and cultural unity of the Slavic people. This constantly expressed desire to further integrate with Russians doesn’t imply, however, the negation of a specific Belarusian identity. As for the discourse on the glorious Soviet past and the Slavic unity, the emphasis is on the important and unique role played by the Belarusian people in the whole region and never on the dissolution of the Belarus in some supra-national entity. Belarusians are presented as those who preserve the most fiercely the memory of the Soviet grandeur and are the most fervent defenders of the weal of all fraternal nations i.e. their re-established unity. This constitutes Belarusian specificity in the eyes of the Belarusian president. In this discursive frame Chernobyl disaster is seen as a common tragedy (not at all as common fault or responsibility) though it was most harmful for the Belarusians. The brotherly Russian people is thus supposed to help Belarus in distress. Providing cheap or even free energy resources, for example, is one way to help.
Thus, in 1999 in his speech delivered in Russian Duma Lukashenka said:

By the way, about Chernobyl. The Chernobyl plant was constructed (everybody knows it already) not in our territory, we didn’t blow it up and it was not our fault, but the consequences of this disaster are all ours. Who has helped us? Maybe those who now shout loudly about the violations of human rights and freedoms in Belarus? Nobody has helped us! We were left alone in the face of the awful disaster consequences. My country has to spend annually a quarter of our budget (Think about it, You’ve just adopted a new budget, do you have such budget heading?), a quarter of our budget, every fourth rouble on the management of the consequences of this terrible disaster. How can you speak about wealth today?! Of course, it is much easier to reproach Belarus for 200 billion dollars debt for Russian energy supplies[28].

But the main enemy which is stigmatized in this discourse on the lack of international assistance are western countries. The West is constantly depicted as an external force which is interested purely in destabilizing the country and in preventing it from becoming a strong rival:

I was already saying 10 years ago that we can only rely on ourselves in coping with the Chernobyl problems. I saw pretty clearly then that nobody would help us for free, even if we were in distress. The opposition shouted loudly at this time “ the West will help us”. But generally speaking the West has helped nobody. We knew that we would not receive any substantial humanitarian aid, as well as Russia or Ukraine. Apart from some individuals whom we rewarded and who have really helped us. (…) Nobody will help us in order to “level us up” a little bit. Nobody needs a rival. Everybody needs us to be weak. And we want to be strong. But we can only rely on ourselves to become strong[29].


B … in opposition discourse and practices

1) Lukashenka regime and the physical disappearance of the nation.

The threat of physical disappearance is also used by those who seek to overthrow Lukashenka’s regime. It is supposed to weld Belarusian national community in the struggle against of the authoritarian regime. The opposition representatives emphasise the disastrous demographic situation in Belarus. The governmental policy of negation of the radioactive risks for the population is depicted as one of the main causes of the demographical crisis.
Thus a Belarusian academician Ivan Nikitchenko, who supports the Belarusian Popular front in his Chernobyl activities begins one of his numerous articles dedicated to the Chernobyl consequences and demographic problems in such a manner: « From 1993 the Belarusian population has crossed the threshold where the extinction of the nation starts, i.e. the demographic catastrophe. »[30]
Zianon Pazniak, the ex-leader of the Belarusian Popular Front, denounces the « Chernobyl genocide » accomplished by Alexander Lukashenka’s regime:

The conditions have now been created. We can expect the radioactive extinction of the Belarusian population, the loss of health of the Belarusian nation and the increasing illness of the Belarusian children. Every time Belarusians try to do something to struggle against the consequences of Chernobyl, they meet an open or hidden resistance to the national salvation[31].

The demographic statistics are quoted to illustrate this discourse[32].
Getting people informed of this extreme threat is supposed to help the oppressed nation to get consolidated in the struggle for its survival which requires the destitution of the Lukashenka regime and the achievement of the country’s full independence. This independence is first of all considered as a freedom from the colonial dependence from Moscow.

2) Chernobyl as the consequence of the Soviet-Russian genocide. The demand for reparations

Russia and its colonial ambitions are depicted through the commemoration of the Chernobyl disaster as the main external threat of the Belarusian national community and its cultural, economic and political fulfilment. This stigmatization of Russia takes different discursive forms. Some radical contentious nationalists see all the policies related to the management of Chernobyl disaster consequences as the result of Russia’s will to destroy Belarusians using the puppet Lukashenka regime: “Chernobyl genocide of the Belarusian people is a Moscow’s hidden policy and a Lukashenka’s open policy”.[33]
The demand for reparations of the damages caused by the Chernobyl disaster addressed to Russia is another symbolic means to highlight the frontier between Russia and the Belarusian community. This demand is often articulated in the discourses of the contentious nationalists. It is suggested that Russia, as the legal successor of the Soviet Union, should pay the reparations to indemnify the consequences of the disaster made possible by the soviet authorities. Such a demand, which in reality has little chance to be satisfied, has above all a symbolic meaning. It aims to brake away from the official discourse on the fraternity and the common destiny of two nations.
Finally the negative representations of the eastern neighbour shows in the opinion, constantly expressed by the opposition members, that the Belarusian dependency from Russia is the main obstacle for the democratisation of the country and its opening to the (western) world considered as the necessary conditions to the successful management of the Chernobyl consequences.

3) Openness to the Western world and the return to Europe as a unique hope to overcome Chernobyl
The international isolation of Lukashenka’s Belarus is depicted as the major obstacle in organising an effective assistance to the Chernobyl-affected populations. Thus, in spring 2006, when the State and the opposition commemorated the 20th anniversary of the disaster, the leader of the United Civil Party Anatoly Lebedko commented on the international conference organized by the Belarusian authorities: :

We have to understand that as long as this regime goes the successful solution for all the problems the « Chernobylians » are facing is impossible. Iouchtchenko, Putin, Adamcus, Katchinsky, presidents of the neighbouring countries that have experienced firsthand the Chernobyl problems haven’t come to Minsk for the international conference, dedicated to the 20th anniversary of the Chernobyl disaster. This is significant. Belarusian authorities that have chosen the policy of auto-isolation have demonstrated that their ability to cope with real problems is minimal. The political component of the Chernobyl issue appears to be the most important.[34]

The negative consequences of this isolation are often illustrated by the concrete examples of how the authorities impede the realisation of the international assistance projects to the affected populations: the state’s stranglehold on the distribution of the international humanitarian aid, the repressions against Belarusian non-governmental organisations that cooperate with the western organisations and seek to provide Chernobyl victims with the assistance, the restrictions on the abroad travel of the children from the affected areas which was a very common form of assistance provided by the families of western countries willing to help the children of Chernobyl.
At the symbolic level the openness to the world is above all understood as the return of the Belarusians to the European context, seen as the synonym of the democratisation. Thus in his speech delivered to the European Parliament on the occasion of the 22nd anniversary of the Chernobyl disaster one of the leaders of the BPF Vintsuk Viachorka declared:

I do not see ways to change strategies of rescuing the Belarusian nation without the country’s return to the path of freedom, democracy, and European values.[35]


Thus, the analysis of public tales of the Chernobyl disaster highlights the process of making a meaning out of what was the most important nuclear accident in the human history. This disaster’s interpretations as well as the authorities’ responses to it have been significantly changing since the end of the 80’s depending upon the political and institutional context and political actors’ strategies. Such interpretations have been shifting from the strong anti-Soviet resentment to the apologetics of the soviet past and soviet system. The revelation of the magnitude of the accident and of the official lies and disinformation haven’t helped the opposition nationalists to successfully mobilize anti-soviet national identity and to overthrow the governing elite. But the memory of the disaster is still a very important part of the identity strategies of both the State and its challengers in Belarus. Twenty years later, the disaster is still subject to reinterpretation regarding its social, political or cultural meaning as well as its physical, biological and medical consequences. Thus, the recent decision of the Belarusian authorities to construct the first Nuclear Plant on the Belarusian territory seems to have created a new ground for the struggle over the Chernobyl memory and its significance for the past, present and future of the Belarusian nation.
[1] Mark BEISSINGER, National Mobilisation and The Collapse of the Soviet State, Cambridge, Cambridge University Press, 2002, p.252
[2] Ibid.
[3] Rogers BRUBAKER, Nationalism reframed : nationhood and the national question in the New Europe, Cambridge, Cambridge University Press, 1996, p.4
[4] The concept derives from Benedict Anderson’s text in which he suggests the following definition of the nation: “… it is an imagined political community - and imagined as both inherently limited and sovereign. It is imagined because the members of even the smallest nation will never know most of their fellow-members, meet them, or even hear of them, yet in the minds of each lives the image of their communion.” See Benedict ANDERSON, Imagined Communities: Reflections on the Origin and Spread of Nationalism, London and New York, Verso, 1991, p.6
[5]Rogers BRUBAKER, op. cit., p.13, see also the whole Chapter 1 “Rethinking nationhood: nation as institutionalized form, practical category, contingent event”, p.13-22
[6] Katherine VERDERY, « Whither “Nation” and “Nationalism” » ?, in Daedalus, summer 1993, volume122, n°3, p. 38
[7] Richard HANDLER, « Is “Identity” a useful cross-cultural concept ? », in John GILLIS (dir.), Commemorations: the politics of national identity, Princeton, Princeton university press, 1994, p. 30
[8] Ibid.
[9] Mark BEISSINGER, op. cit., p.18

[10] The speech delivered by the President Alexander Lukashenka at the solemn meeting on the occasion of the 60th anniversary of the Victory of the soviet people over the fascist invader 10.05.2005, http://law.sb.by/128/, 29.05.08

[11] Nina TUMARKIN, The living and the dead : the rise and fall of the cult of World War 2 in Russia, New York, Basic Books, 1994, p.134
[12] V. E. ŠEVČUK, V. L. GURAČEVSKIJ, Posledstviâ Černobylâ v Belarusi: 17 let spustâ. Nacional’nyj doklad, (The Chernobyl consequences in Belarus: 17 years after. National Report), Minsk, Propilei, 2003, p. 34
[13] Belarus : 20 year-long battle with Chernobyl consequences. Photo album, Minsk, Belta, 2005, p.33
[14] Ibid., p.4
[15] «Belarus’ spravitsiâ s zadačej reabilitacii černobylskih regionov », ( Belarus will deal successfully with the task of recovery of the Chernobyl-affected areas. The report on the president Alexander’ Lukashenka’s trip to the Braguine district and Gomel region on the occasion of the 20th anniversary of the Chernobyl accident, http://www.belta.by, 27.04.06
[16] Belarus : 20 year-long battle with Chernobyl consequences. Photo album, op. cit., p.33
[17] Indeed, Pahonia was the official coat of arms of GDL until the annexation of the Polish-Lithuanian Commonwealth by the Russian Empire in 1795. The legend origins of the white-red-white banner are related to the battle of Grunwald when the armies of Poland and the Great Duchy of Lithuania defeated the German knights of the Teutonic Order and a white bandage soaked with blood was used as a victorious banner. But Historically White-Red-white flag first appeared only in 1918. The Pahonia and the white-red-flag became the official symbols of the short-lived Belarusian People’s Republic
[18] On the use of the term genocide by Belarusian nationalist opposition see Alexandra GOUJON, « Genozid » : a rallying cry in Belarus. A rhetoric analysis of some Belarusian nationalist texts » in Journal of Genocide Research, n° 1(3), 1999, pp.353-366
[19] Zânon PAZNÂK, « Fizičnae zniščèn’ne belaruskaj nacyi » ((Physical destruction of the Belarusian nation)) in Zânon PAZNÂK, Novae stagoddze (New century) , Vilnius, Tavarystva Belaruskaj Kultury ŭ Letuve ; Warsaw, Belaruskiâ vedamas’ci, 2002, pp. 45-50
[20] Alexandre MILINKEVIČ, « Ostanovim političeskij Černobyl » (Let’s stop the political Chernobyl), http://www.afn.by/news/docview.asp?id=716, 23.04.07
[21] Lûdmila KIRILLOVA, «Tihaâ ohota», (Silent war) in Belarus’ Segodnâ, №78, http://www.sb.by/article.php?articleID=51156, 26.04.06
[22] In 2006 Belarusian government adopted the “National Program for the Demographic Security of the Republic of Belarus for 2007 - 2010”
[23] “Demografiâ : vopros žizni i smerti dlâ nacii, ili kak belorusskiï krest prevratit’ v belorusskiï plus”, (Demography : a matter of life and death for the nation, or how to turn Belorusian cross into Belarusian plus”), interview with the Belarusian vice-prime minister Alexander Kossinets, http://www.government.by/ru/rus_interview20070502.html, 21.02.08

[24] The speech delivered by the President of the Republic of Belarus on the occasion of the annual Presidential Address to the Parliament of the Republic of Belarus, http://www.president.gov.by/press18792.html#doc, 20.06.08
[25] «Belarus’ spravitsiâ s zadačej reabilitacii černobylskih regionov », op. cit.
[26]Ûriï ŠEVCOV, Ob’edinennaâ naciâ. Fenomen Belarusi (A united nation: the Belarusian phenomenon), Moscow, Evropa, 2005, p. 141,
[27] Belarus : 20 year-long battle with Chernobyl consequences. Photo album, op. cit., 2005, p.4
[28] The speech delivered by Alexander Lukashenka at the plenary session of the State Duma of the Russian Federation on 27 October 1999, http://1.nestor.z8.ru/14/BELARUS.zip, 24.05.2001
[29] “Silnymi nas ne sdelaet nikto, krome nas samih” (We can only rely on ourselves for becoming strong), http://www.president.gov.by/press12134.print.html, published on 26.04.05
[30] Ivan NIKITČENKO, “Ècologičeskaâ ugroza Belarusi“ (Ecological threat over Belarus), in Narodnaâ Volâ, 13.09.2007, http://www.charter97.org/bel/news/2007/09/13/eco, 20.06.08
[31] Zânon PAZNIÂK, “Slova ŭ 15-û gadavinu Čarnobyl’skaï tragedyi” (A message on the occasion of the 15th anniversary of the Chernobyl tragedy), in Belaruskiâ Vedamasci, n°4(34), April 2001, p.1
[32] Uladzimer STARČANKA, “Idze Čarnobylskaâ vaïna!”, (Chernobyl war is going on!), in Belaruskiâ Vedamasci, n°4(34), April 2001, p.2-4
[33] Zânon PAZNIÂK, “Slova ŭ 15-û gadavinu Čarnobyl’skaï tragedyi” (A message on the occasion of the 15th anniversary of the Chernobyl tragedy), in Belaruskiâ Vedamasci, n°4(34), April 2001, p.1-2
[34] Anatoly LEBEDKO interviewed by the Press Service of the United Civil Party on April 26, 2006, http://www.ucpb.org/index.php?lang=rus&open=9636, 15.06.08
[35] Vintsuk Viachorka’s speech delivered on the 17th of April, 2008 at the European Parliament, http://www.pbnf.org/index.php?index=2&id=2891, 02.06.08

mercredi 24 septembre 2008

Scientific and Humanitarian Initiatives for Support of Liquidators and Victims of Catastrophe in Chernobyl Under the auspices of the Member of the Eur


CONFERENCE
Scientific and Humanitarian Initiatives for Support of Liquidators and Victims of Catastrophe in Chernobyl Under the auspices of the Member of the European Parliament
Dr. Laima Andrikien÷Organizer
Institute of Democratic Politics, Lithuania
Sponsors
National Endowment for Democracy, USA
Democracy and Development Assistance Fund, Lithuania
Partners
Mykolas Romeris University, Lithuania
NGO “Union Chernobyl – Belarus”, Belarus
British Association of Hirudotherapy, UK
International Family Association, UK

PROGRAM
9th October (Thursday)
Mykolas Romeris University (414 room, Ateities st. 20, Vilnius)
08:30 – 09:00 REGISTRATION
09:00 – 09:30 GREETINGS
09:30 – 11:45 I SESSION. Modern problems of demography and health condition of population living on the territory that suffered from radiation factor exposure during the years of USSR existence. Creation of international scientific research center “Ecology and Health”.
Moderators
Mikhail Marinich, Belarus
Prof. Laurent Gerbaud, Clermont-Ferrand University, France
Panelists
Prof. Yuri Bandazhevsky, Belarus
Radiation, ecology and health of people, creation of international scientific research center “Ecology and Health” Prof. Gilles-Eric Séralini, Prof. Frédérick Lemarchand, Caen University,
France Project for an Institute for Sustainable Environment in Normandy Prof. Ivan Nikitchenko, Science Academy, Belarus Economic and socio-demographic consequences of Chernobyl catastrophe in the Republic of Belarus
Prof. Danut÷ Marčiulionien÷, Institute of Botany, Lithuania Radioecological situation in Lithuania after the Chernobyl accident (1993-2007 years)
Prof. Chris Busby, UK Radioactive contamination of the atmosphere and the health of the
population of Great Britain
Dr. Galina Bandazhevskaya, Belarus Condition of health of liquidators and victims of accident in Chernobyl nuclear power plant
Valentina Smolnikova, Doctor/Pediatrician, Belarus Condition of health of adults and children living on the territory polluted with radioactive elements (Buda-Koshelevsky region of Gomel district of the Republic of Belarus)
Alexei Duzhy, Elena Bulova, Petrikov Central District Hospital, Gomel State Medical University, Belarus Assessment of the severity of the defeat of the cardiovascular system of the people living in areas contaminated with radioactive elements (Petrikovsky region of Gomel district of the Republic of Belarus)
Discussion
11:45 – 12:00
Coffee Break
12:00 – 13:40 II SESSION. International support of liquidators and victims of accident in Chernobyl nuclear power plant. Creation of an international syndicate of liquidators of accident in Chernobyl nuclear power plant.
Moderators
Prof. Chris Busby, UK
Prof. Yuri Bandazhevsky, Belarus
Panelists
Alexander Volchanin, Chairman of Nongovernmental Organization “Union Chernobyl – Belarus”, Belarus Social-economical problems of liquidators of accident in Chernobyl nuclear power plant in the Republic of Belarus
Garry Pogoniaylo, lawyer, human rights defender, Belarus Legal protection of population of the Republic of Belarus
Bénédicte Belgacem, Health Services Hospital
Prof. Dave Sheehan, Clermont Graduate School of Management, ESC France Perspective of creation an international syndicate of liquidators of accident in Chernobyl nuclear power plant Jean-François Rivalain, political analyst, Belgium
International humanitarian initiatives in support of democracy and rendering of assistance to people who suffered from the accident in Chernobyl nuclear power plant in the Republic of Belarus
Prof. Albert Krasheniuk, Russia Physiotherapeutic and non-medicamental methods of health improvement of liquidators and victims of Chernobyl catastrophe
Discussion
13:40 – 14:30 Lunch
14:30 – 16:30 III SESSION. Social-economical, moral-ethical and ecological problems of construction of nuclear power plant in Belarus.
Moderators
Yuriy Voronezhcev, Belarus
Eduard Melnikov, Belarus
Panelists
Prof. Georgiy Lepin, Belarus
Consequences of ecological, social and economical plans of prospective construction of a nuclear power plant in Belarus
Dr. Egor Fediushin, Belarus Perspectives and consequences of creation of a nuclear power plant in the Republic of Belarus
Yuri Melishkevich, Belarus
Organization of movement for nuclear-free Belarus
Discussion
16:30 – 17:00 CONCLUSION
Prof. Yuri Bandazhevsky, Belarus
Passing of the conference resolution in support of liquidators and victims of accident in Chernobyl nuclear power plant, creation of scientific research center “Ecology and Health” in Lithuania, establishment of international syndicate of liquidators of accident in Chernobyl nuclear power plant.

lundi 22 septembre 2008

Dominique PECAUD : A trip to a ghost town





J’aimais leur terre qu’ils avaient souillée plus encore qu’au moment où elle était un paradis, et seulement parce que le malheur y était apparu.
F. Dostoïevski, Le rêve d’un homme ridicule

Pourquoi se rendre à Tchernobyl ? Depuis l’annonce de ce voyage programmé dans le cadre d’une université d’été consacrée aux risques en Europe[1] et à laquelle je participais à la fin du mois d’août 2008, la réponse à cette question s’est transformée à plusieurs reprises. Une semaine de cours et de conférences à Kiev, ville située à cent cinquante kilomètres du « point-zéro » de l’explosion a joué le rôle d’un retour sur soi, un peu à la manière de celui que procure l’attente imposée au navigateur par des conditions météorologiques qui l’empêchent de prendre le large. Le renoncement à ce voyage constitue l’aboutissement de ce cheminement de pensée, et la décision de ne pas aller à Tchernobyl correspond précisément à l’avatar d’une expérience de la compassion. C’est ce que ce texte cherche à relater.
Ma première intention était d’aller à Tchernobyl. Avant de quitter la France, j’avais fait part de ce projet à plusieurs de mes connaissances et recueilli de leur part un sentiment mêlé d’envie et de crainte. Voir Tchernobyl, - j’allais presque dire : faire Tchernobyl, pouvait relever de l’attrait d’une expérience rare. Elle permettait à celui qui l’accomplissait de de prendre une place envié dans la fadeur qui accompagne généralement les conversations de voyage. « Imaginez-vous : je suis allé à Tchernobyl ! ». « Et bien, oui, je suis allé à Tchernobyl ! » Jusqu’à s’autoriser à parler de ce voyage en toute connaissance de cause, à livrer des propos littéralement spectaculaires à destination de ceux vous écoutent. Leur donner à voir, les mettre sur la piste de ce qu’ils y verraient eux-mêmes s’ils s’y rendaient, s’ils avaient la chance de pouvoir s’y rendre. « Si vous saviez ce que j’ai vu à Tchernobyl ! ».
Mais la visite de Tchernobyl peut produire autre chose qu’une simple fanfaronnade. Elle ouvre à l’épreuve du sentiment de compassion quand il s’agit de retrouver les traces du grand malheur que constitua l’explosion du réacteur numéro quatre et les effets que cela entraîna.
De quelle compassion s’agit-il ? D’une manière générale, la compassion peut être définie comme le sentiment qui permet le déploiement de soi dans un rapport intentionnel à l’autre, l’autre étant ressenti comme un autre soi-même. Ce sentiment est donc par essence altruiste. Pour l’éprouver, il rend nécessaire l’attention prêtée à l’autre. Pourtant cette orientation vers l’autre contient aussi un retour sur soi. En effet, si la compassion retient l’autre comme objet d’attention, si elle rend nécessaire le souci de l’autre, à travers cette prise en compte de l’autre, elle alimente également le souci de soi. Si la compassion se veut altruiste, elle est en partie égoïste.
Or l’égoïsme nécessaire à l’épreuve de la compassion peut aussi fermer cette dernière au souci de l’autre, participer à son oubli. Quelle universalité du sentiment d’humanité permettrait alors de sortir du danger soliptique que comporte la compassion ? Éprouver des difficultés à répondre à cette question trahit la difficulté à poser le souci de soi dans le cadre d’une humanité universelle définie comme l’ensemble sans exclusion des êtres humains et des êtres non-humains. Pourtant, n’existe-t-il pas une hiérarchie plus ou moins implicite de l’intérêt compassionnel que représente à nos yeux tel humain plutôt que tel autre, tel non-humain, animal ou objet, plutôt que tel autre ? Cette hiérarchie n’oblige-t-elle pas à mettre à l’épreuve l’ensemble de ces catégories ? Par exemple, tel objet ne se chargera-t-il pas, plus que tel autre, d’un attrait compassionnel ? Comme s’il était évident que c’est bien cela qu’il faut voir, c’est bien cela qu’il faut photographier, conserver. Si c’est cela, il faut alors convenir du constat suivant : plus que le souci de l’autre, c’est bien le seul souci de soi qui oriente implicitement ou non nos priorités compassionnelles.
À travers sa dimension spectaculaire donnée par l’expérience du surgissement des lieux et des objets, le voyage à Tchernobyl peut devenir la source d’une compassion tronquée. L’épreuve du voyage est proposée comme expérience de l’universalité de la souffrance engendrée par la folie technique. Mais proclamer a priori cette universalité permet-t-il d’éprouver un sentiment de compassion pour ceux qui ont été les victimes de cette folie, ceux qui ont éprouvé cette horreur dans leurs chairs ? Il nous a semblé que cette proclamation hâtive de l’universalité troublait cette possibilité, qu’elle négligeait le cheminement compassionnel qui exige, comme nous venons de le dire, que l’autre puisse d’abord être considéré comme un autre soi-même. La confrontation au réel proposé réduit cette possibilité. L’attrait du spectaculaire, la sollicitation brutale des objets dont ce dernier va se nourrir expulsent l’autre sans que nous nous en rendions compte. Baignés d’un sentiment d’universalité envers le spectacle proposé, aveuglés par la mise en scène involontaire de l’horreur, nous ne pleurons plus que sur nous-mêmes.
Le sentiment de compassion peut maintenir pour un temps la tension entre l’expérience personnelle du voyage et la volonté de servir la cause d’une humanité universelle. Il nous maintiendrait de tout égoïsme calculateur, fut-ce de la jouissance spontanée et collective du malheur. Mais c’est fou comme on photographie Tchernobyl à Tchernobyl. C’est fou comme on se photographie devant le sarcophage de la centrale, comme si l’incertitude de notre présence était levée par la silhouette médiatisée. Un, deux, trois. « Regardez, c’est bien moi qui était à Tchernobyl ! ». Comme la tour Eiffel signifie sans ambiguïté le séjour à Paris, comme le Colisée rappelle la promenade à Rome, le décor du sarcophage et de sa cheminée étayée témoignent du passage furtif à Tchernobyl. Il existe désormais le « monument » de Tchernobyl qui témoigne de l’accomplissement du voyage. L’exploit d’une habitation provisoire devient manifeste, incontestable.
Il y a pourtant moins de touristes à Tchernobyl que sur les terrasses du Palais de Chaillot sur fond de tour Eiffel. Environ trois mille visiteurs annuels pris en charge par deux opérateurs. L’association Pripyat.com fondée et animée par des anciens habitants de la ville éponyme cherche à maintenir la mémoire du lieu et à favoriser la venue des anciens résidents. C’est elle qui emmenait les participants de l’université d’été à Tchernobyl. L’autre opérateur, une organisation privée évoque dans la rubrique What to see du guide touristique de Kiev Tchernoby tours l’originalité de l’expérience. « It’s not every trip abroad you have the chance to visit the site of the world’worst nuclear accident, is-it ? ». L’attrait pour le spectacle ne relève donc pas d’une chimère ! J’avoue avoir été tenté par l’exploit de l’habitation provisoire à Tchernobyl, par l’héroïsme du voyage spectaculaire, peut-être aussi par l’incertitude des dangers que ce voyage comportait et qui renforçait le goût ancien pour un héroïsme de bazar. Mais j’avoue aussi avoir cherché à atténuer le malaise provoqué par ce goût en me réfugiant derrière le programme proposé par l’université d’été, et en mettant en avant la garantie morale que représentait l’association Pripyat.com. mandaté pour organiser le voyage.
Aller à Tchernobyl, c’est marcher, notamment à Pripyat sur les traces d’une humanité à la fois présente et disparue. Chacun peut faire l’expérience du sentiment de compassion en face d’une humanité mimétique, C’est-à-dire une humanité définie par le spectacle de ce qui la menace et la détruit. Touristes occidentaux avides de sensations, mais aussi ukrainiens, russes et biélorusses venus voir ce qu’on leur a caché à l’époque. « Liquidateurs » venant mesurer avec modestie la valeur d’un exploit réalisé comme en état de guerre, la guerre contre l’atome, la reconquête d’un territoire envahi par les radiations. Une guerre gagnée en emprisonnant l’atome, en le contraignant dans un sarcophage percé et dans des zones administratives. On peut trouver à Pripyat des photos abandonnées le jour du départ ou déposées depuis dans des reliquaires improvisés, pour témoigner de la présence passée ou de la disparition présente. On peut trouver des jouets, des objets de cuisine, des petits mots qui organisaient la vie quotidienne. On peut côtoyer tout ce qui peut lier le voyageur à l’intimité des habitants « déplacés » et que les pilleurs ont laissé sur place par manque de valeur marchande. On peut même voir des objets que des journalistes peu ou trop scrupuleux ont mis en scène pour mieux rendre compte du malheur passé. Faudrait-il donc parfois montrer plus pour donner à voir juste ?
La vision de la ville de Pripyat abandonnée par sa population de cinquante mille personnes trente-six heures après l’explosion du réacteur numéro quatre, la ruine urbaine qui se fabrique depuis vingt ans pourraient aider le voyageur introspectif à mesurer l’humanité de sa relation aux autres, ceux qu’il ne connaît pas mais dont il a décidé une fois pour toutes qu’ils lui ressemblaient. C’est la vertu qu’aurait ce voyage. Le spectacle proposé est investi d’une force supposée qui nécessiterait d’être présent physiquement là où leur malheur s’est convoqué sans prévenir. Apporter la certitude que chacun pourrait éprouver ce que les habitants ont vécu du fait même de résider pour un court moment là où ils ont vécu. Plus nous serions convaincus que les morts ou les absents nous ressemblent, plus notre trouble deviendrait grand et généreux. Frères humains…
Cette vision de l’extérieur que livre l’habitation provisoire de Tchernobyl par le biais du voyage peut aussi devenir expérience intérieure. Le voyage devient immobile, à distance. La compassion apparaît alors sous les traits d’un soliloque intime qui se veut orienté vers les autres, ceux de Tchernobyl, les morts comme les absents d’aujourd’hui. C’est comme si le spectacle proposé se contentait des ombres ou des échos. Un spectacle ressenti.
Prenons garde ! Faire l’expérience de cette empathie ne peut garantir d’aucune manière la sortie du solipsisme que contient en soi l’expérience du sentiment de compassion. Pleurer sur le sort des autres, c’est encore pleurer sur soi-même. Pleurer sur les autres, c’est anticiper sur notre propre sort, celui d’aujourd’hui ou celui qui est à venir. C’est anticiper sur notre disparition, le grand malheur qu’elle peut représenter pour nous-mêmes comme pour ceux dont nous pensons qu’ils tiennent à nous. Mais ce n’est que nous qui mesurons cela. Ceux qui nous font souffrir de leur souffrance restent indifférents à notre souffrance. Par là, nous nous rendons compte combien le rapport aux autres dépend de l’état de notre propre narcissisme, pas celui qui nous rend désirable aux yeux des autres, mais, au contraire, celui qui nous rend misérable à nos propres yeux et conforte ainsi l’image grandiose que nous avons de nous-mêmes à ce moment-là. L’expression du sentiment de compassion s’inscrit dans un retour sur soi à peine exprimable. Son épreuve indique aux autres combien nous nous aimons trop ou mal, trop et mal. Par l’expression de cet amour de soi excessif ou monstrueux, nous leur faisons savoir, sans que nous le sachions nous-mêmes, que nous leur interdisons l’amour altruiste qu’ils pourraient nous offrir.
Comment donc sortir du solipsisme compassionnel pour éprouver à travers l’autre le sentiment d’une universalité de l’humanité ? Est-il possible de le faire ? La question d’aller ou non à Tchernobyl renvoie à celle du statut de l’objet à partir duquel un sentiment compassionnel qui ne serait pas uniquement soliptique pourrait être éprouvé. Sur quoi ce sentiment peut-il donc reposer ? Quelle est la familiarité avec l’objet sur lequel il porte et qui devient nécessaire pour éprouver l’universalité de l’humanité sans que celle-là nourrisse le leurre d’un narcissisme qui nous cloue à nous-même ?
Cette succession de questions s’est déployée en renonçant au voyage spectaculaire à Tchernobyl aussi attractif a-t-il pu un moment se présenter à mes yeux. Quand Tchernobyl tours offre « a trip to a ghost town », l’épreuve de l’immobilité, du retour sur soi pour faciliter le retrait de soi devient nécessaire pour rendre à Tchernobyl son humanité. Cette épreuve peut aider, par cette bien modeste contribution, à lui faire perdre l’inhumanité dans laquelle l’explosion du réacteur n°4 l’a radicalement plongée le vendredi 26 avril 1986 à une heure du matin, et que le voyage spectaculaire peut faire perdurer. C’est aussi s’écarter d’une identité spectaculaire qui menace toujours l’épreuve du sentiment de compassion.
Quand il n’est pas un habitant d’avant 1986, un voisin de proximité ou plus lointain qui souhaite retrouver ou savoir, le voyageur furtif de Tchernobyl a peu de chances d’échapper au spectacle de Tcherhnobyl. Il a peu de chances d’être attiré par la contemplation de ce qui illustre le mieux pour lui le malheur produit. Il est sans doute difficile de lever, comme le fait Maxime[2], les traces du bonheur de ce lieu alors habité. Seuls ceux qui ont vécu à Pripyat avant l’explosion possèdent ce pouvoir.
Maxime témoigne de l’intimité de son voyage de retour. Il n’a de cesse de retrouver les lieux et les objets du bonheur d’être enfant : un magasin de jouets, une balle en caoutchouc rayée de rouge, le poster de sa chambre soutenant le visage bienveillant et attentif d’un cheval blanc. C’est à l’aune de l’expérience du bonheur retrouvé qu’il mesure son malheur. Une perte. La perte. L’enfance ressurgit dans les ruines, et la perte de l’enfance ruine le lieu. Le regard de ce cheval attentif, le museau posé sur la porte de l’écurie, l’invitation à la douceur, toujours là, et qu’il va devoir abandonner à nouveau. Le cheval, son cheval va retourner au silence. Maxime en a décidé ainsi. Le silence. Mais l’attente un peu folle du retour sera rompue. Rester ? Non, il faut partir. Maxime ne reviendra plus. Jusqu’où l’un et l’autre éprouveront-ils cette solitude insupportable dans le présent, cette solitude qui ne peut surgir que dans le silence, le recueillement ou la révolte, et qui ne peut se dissoudre que dans la séparation ? Maxime acceptera-t-il de laisser là son passé pour tenter de se construire autrement ?
Que peut donc éprouver l’autre voyageur, celui qui prend ces témoignages visuels à la figure et qu’il interprète comme les signes les plus spectaculaires du malheur alors qu’ils sont encore pour Maxime les traces de son bonheur ? Peut-être même que ce voyageur se mettra-t-il à les rechercher sur place pour témoigner de leur présence une fois rentré là où il habite pour de vrai cette fois ?
Ainsi, ce voyageur, sans le vouloir, risque de maintenir à tout prix l’inhumanité du lieu, Il risque d’effacer l’humanité de ce lieu alors même qu’il en guette les signes. Il risque de s’empêcher et d’empêcher les autres d’accéder à l’obligation de rendre à ce lieu son humanité, ce qui, bien sûr, ne veut pas dire restaurer les conditions matérielles d’un retour de ses habitants. Combien, de toutes les façons, ne pourrait plus revenir ! L’accès et le recours à cette humanité est indispensable à l’expression d’un sentiment de compassion non soliptique qui offre aux humains comme aux non-humains l’expérience dont parle Paul Ricœur[3] de s’éprouver soi-même comme un autre, ce qui revient à éprouver l’autre comme soi. Le spectaculaire, l’inventaire du plein du lieu ne peut qu’entraver ce sentiment.
Si l’on s’accorde sur ce point, il reste à concevoir un mémorial pour Tchernobyl qui rende possible l’épreuve d’une compassion non soliptique. Il nous semble que ce mémorial qu’il soit matériel ou spirituel ne pourrait être que vide. Ce serait la condition pour qu’il n’offre aucun obstacle à l’épreuve de l’altérité dans sa dimension universelle, aucun obstacle pour s’aimer plus que soi-même, condition d’accès au sentiment d’humanité.

2 septembre 2008
[1] Université européenne d’été « Sociétés du risque en Europe », Kiev, 25-30 août 2008.
[2] White Horse, Film de Maryann De Leo et Christophe Bisson, produit par Downtown TV Documentaries, New York City, 2007
[3] Paul Ricœur, Soi-même comme un autre, éditions Point/le Seuil, Paris, 1990

Vers un Tchernobyl français ?


Vers un Tchernobyl français ? Un responsable d’EDF brise la loi du silence
Eric Ouzounian

Le journaliste Eric Ouzounian a recueilli le témoignage — évidemment anonyme — d’un responsable d’Electricité de France (EDF), effaré par la course au profit qui irradie une filière nucléaire française en voie de privatisation et qui menace la sûreté des installations. Le constat est anxiogène : concurrence et réduction des coûts obligent, EDF défendrait ses intérêts financiers en rognant sur la maintenance, sous-traitée à des sociétés qui font elles-mêmes appel à des intérimaires corvéables à merci. L’auteur ne prend pas position pour ou contre l’énergie nucléaire — là n’est pas son sujet. Il se borne à constater, au terme d’un inventaire des risques et au fil des révélations de son témoin, que la manipulation de l’atome s’avère une tâche bien trop périlleuse pour se voir confiée à un secteur privé, uniquement régi par la loi du marché. Déjà les exercices d’évacuation inopinés donnent des résultats décevants et — il n’y a pas de petites économies — dans les centrales vieillissantes, la disponibilité de certaines pièces de rechange n’est plus garantie...
Cédric Gouverneur

High Level Expert Group: research on low doses risks



Executive summary
Both natural and man-made sources of ionising radiation contribute to human
exposure and constitute a hazard for human health. Exposure of the population to natural radiation is to some extent unavoidable and medical use of radiation is now an indispensable part of modern healthcare. The exposure of workers, and to a smaller extent of the public, to low levels of radiation from nuclear energy production and other industrial uses of ionising radiation have become an integral part of industrialised society. These uses are heavily regulated. Radiation protection standards rely on current knowledge of the risks from radiation exposure. Any over-, or under-, estimation of these risks could lead either to unnecessary restriction or to a lower level of health protection than intended.
Although much is known about the quantitative effects of exposure to ionising radiation, considerable uncertainties and divergent views remain about the health effects at low doses. The importance of low dose risk research is now recognised globally. Outside of Europe, the US and Japan have established large programmes of research. Many of the larger Member States of the EU also have considerable research activities in low dose risk. However, beyond the EURATOM research programme, little has been done to integrate these programmes. There has been a decline in scientific and regulatory expertise in radiobiology and radiotoxicology during the last decades, but plans to establish new nuclear plants and the increasing application of ionising radiation in medicine now accentuate the need to revitalise the field and research capacity.
All these aspects highlight the necessity to address these issues at a strategic level in Europe.
A European High Level Expert Group (HLEG) was formed to consider these issues. Membership comprised representatives of national funding bodies and the European Commission. They were assisted by experts from the research community to identify research priorities and training needs.
The objectives of the Group were:
· To formulate and agree the policy goals to be addressed by low dose risk
research;
· To develop a strategic research agenda and road map for such research
in Europe;
· To specify the essential elements of and next steps for establishing a sustainable operational framework for low dose risk research in Europe.
This report of the European High Level Expert Group has been prepared under the responsibility of those members representing funding bodies and the European Commission (see Term of Reference on the web). In preparing the report, input has been obtained from a broad range of expertise within the research community (with expert members co-opted onto the HLEG), in particular for determining those research directions most likely to respond effectively to the policy questions established by the funding bodies. The responsibilities of the scientific experts were to provide input on scientific matters. In order to address the above goals, the report
· identifies key policy issues;
· assesses the state of science and the main research challenges;
· proposes a European research strategy and a way forward for its
implementation.
The over-arching policy questions addressed in this report are:
· How robust is the current system of radiation protection and risk assessment in the light of scientific uncertainties?
· How can it be improved?
The radiation protection system, in order to make it practicable, is underpinned by a number of value judgements and simplifying assumptions based on the existing scientific knowledge. The robustness of each of these value judgements or simplifying assumptions determines that of the protection system as a whole.
It is pertinent, therefore, to address each of the key value judgements or simplifying assumptions separately.
The more important issues in this respect are:
 the shape of dose-response for cancer;
 tissue sensitivities for cancer induction;
 individual variability in cancer risk;
 the effects of radiation quality (type);
 risks from internal radiation exposure;
 risks of, and dose response relationships for, non-cancer diseases.
For each of these issues, the report provides a summary of the current state of knowledge and identifies the most promising future research directions.
The complex and multidisciplinary nature of these issues is such that their resolution can be achieved only through the integration of research at a European, or even international, level. The report therefore proposes the establishment of a trans-national organisation capable of ensuring an appropriate governance of research in this field, and a scientific strategy capable of structuring future research in the most effective way, taking into account available resources.

It is proposed to achieve these goals through the launch of a new initiative, which is described in this report as “Multidisciplinary European LOw Dose Initiative” (MELODI). Subject to further consultation, “MELODI” would aim, with a view to sustainable integration, to:
· Bring together the programmes of the various funding bodies and
research organisations in Europe;
· Establish effective interfaces with stakeholders and the broader scientific
and health community in Europe and beyond;
· Ensure the availability of key infrastructures;
· Establish an integrated approach for training and education, including knowledge management.
Increasingly rapid advances in biological and medical knowledge are providing new opportunities to achieve these goals.
The report is now open for public consultation. The group is inviting comments from a broad range of stakeholders (research community, regulatory bodies, industry, healthcare, NGOs, etc.). Comments will be duly considered by the HLEG in finalizing its report.

1. Introduction
Exposure of the population to natural radiation is to some extent unavoidable and medical exposure of the patient during diagnosis and therapy, and of population groups during screening, is now an indispensable part of modern medicine. The exposure of workers, and to a smaller extent of the public, to low levels of radiation from nuclear energy production and other industrial uses of ionising radiation have become an integral part of industrialised society. Any over-, or under-, estimation of the risks to health from ionising radiation could lead either to unnecessary restriction or to a lower level of health protection than intended. Judgements on radiation protection standards in Europe and elsewhere are highly dependent upon a) scientific knowledge that is reviewed in cycles by national committees and by a committee of the United Nations (UNSCEAR1) and b) the recommendations made by the International Commission on Radiological Protection (ICRP) that seek to take account of such scientific development. The acquisition of new scientific knowledge through research is therefore a crucial element in improving the protection of the public, radiation workers and medical patients from the adverse health effects of radiation. Although current radiation protection standards are generally judged to be acceptably robust there remains considerable scientific uncertainty particularly with regard to health risks at low doses and low dose rates. Consequent upon these uncertainties, the issue of low dose risk is a controversial in both scientific and political circles. This report summarizes the current state of knowledge, the major elements of scientific uncertainty in the context of protection policy and risk assessment, and future research activities that have the greatest potential to address these uncertainties. In general these future research activities centre on questions relating to doses and biological effects from different types of radiation, the
biological processes in cells/tissues that mediate the health effects of low dose radiation (principally, but not only, cancer), individual variability and direct assessment of health effects through epidemiological study of groups exposed to low doses. An additional question is how best to combine data from a range of research areas in order to formulate computational models within a more systematic framework for low dose radiation risk. The answer to these questions requires integrated input from many scientific disciplines. Moreover, the over-arching policy question of the robustness of the current system of radiation protection and risk assessment, has to be broken down into specific scientific questions that can be answered by multidisciplinary
research that takes into account the full breadth of the latest advances in 1 United Nations Scientific Committee on Effects of Atomic Radiation scientific knowledge and techniques. A global description of these questions is presented in the following subsections, under the headings:
1. shape of dose response relationship and tissue sensitivity for cancer;
2. individual variability in cancer risk and genetic susceptibility to cancer;
3. radiation quality2 (type);
4. internal exposure risk;
5. risks of, and dose response relationships for, non-cancer diseases.
In each area, the scientific state of the art is presented, and issues are identified that require further investigation in order to answer the over-arching-policy questions. Given the revival in the interest of some Governments in nuclear power generation and the ever increasing use of ionising radiation in diagnostic medicine in Europe and elsewhere in the developed world, it is essential to ensure the long-term maintenance and re-building of expertise, infrastructures and resources relating to radiation protection research. Accordingly, the report addresses scientific competence and training and the elements of research infrastructure that are necessary to sustain future work. The report also describes the key elements of a proposed research strategy for low dose risk research. This will required to go beyond the expression of key research needs and challenges as described above. To achieve success it will be essential to have mechanisms for the specification and periodic updating of priorities for research, for ensuring the provision of long-term funding for focussed research projects and for ensuring the availability of key infrastructures.
The representatives from the funding bodies3 and the European Commission participating in HLEG consider it necessary to establish a sustainable governance structure, at European level, in order to consolidate, implement, and review as necessary over time, such an agreed research strategy.
2 Radiation quality refers not only to radiations of different type (such as gamma rays and alpha particles) but also to other properties of the radiation (such as its energy or ionisation density) that can influence its biological effectiveness.
3 For simplicity ‘representatives from the funding bodies’ is used in this report to describe the members of the HLEG who represent the six national funding (or regulatory) bodies with a significant programme/activities, or with a policy interest, in low dose risk research or of national institutes with a substantial research programme in this area (see Terms of Reference: www.hleg.de/tor.pdf).

2. Key policy issues for ionising radiation risk management in a European context The over-arching policy questions addressed in this report are: How robust is the current system of radiation protection and risk assessment, given its uncertainties? How can it be improved for delivering intended levels of protection of the population from occupational, environmental and medical exposures to ionising radiation?
Judgement on the shape of the dose-response relationship for cancer risk at low doses (say <100>
Figure 3: Indicative research directions to address issues on the shape of dose response relationship and tissue sensitivities for cancer. In figures 3-7, the boxes indicate potential research effort in the short, medium and long term, with some depiction of time dependence such as periodic increases in activity when new epidemiological cohorts are set up or when follow-up analyses take place on existing cohorts. Solid boxes denote combined experimental and modelling studies, dashed-line boxes denote combined experimental and epidemiological studies and dotted-line boxes denote epidemiological studies.
3.2 Individual variability in cancer risk and genetic susceptibility to cancer Dose limits applied in radiation protection have been set to protect an “average individual”, based on studies of risks (mostly cancer) seen in large population groups following exposure to radiation, such as the A-bomb survivors in Japan. For cancer induction, it is well established that there are differences in radiation sensitivity between individuals (and population subgroups), depending on their gender, age, genetic make-up, lifestyle such as smoking, and exposures to other agents. In general, however, although these differences are recognised, they are not specifically accounted for in the setting of dose limits for planning purposes in radiation protection practice, apart from very few special situations (e.g for the embryo and foetus). In principle, the setting of dose constraints can take account of individual variability in radiation response, but this is rarely possible in practice.
At present there is insufficient information to establish how large these various differences in sensitivity may be between individuals or between groups of individuals and their consequent influence on risk estimates at low dose.
Variations between individuals are also relevant contributing factors in respect of the other topics discussed in Shape of Dose Response and Tissue Sensitivity, above, and Radiation Quality, Internal Exposure Risk and Non-cancer Effects, below.
Differences in radiation sensitivity between individuals, or groups, raise the ethical and policy question as to whether some individuals, or groups, are inadequately protected by the present system and regulations. Should different dose limits or constraints be set for men and women, for different ethnic or age groups or should additional lifestyle risk factors be taken into account? If some individuals are at much greater risk because of their genetic make-up, how should their safety, but also their individual rights in employment or public activities or as patients, be protected? To what extent should it be policy to test and identify such individuals, or to design specific medical procedures to take account of their individual characteristics? The curent radiation protection system may, in due course, need to be refined to encompass individual variations in a more general way or to include special cases if these differences are substantial or affect a significant fraction of the population. In order to address these policy questions it is necessary to obtain better scientific information on the extent of the variations in sensitivity in the population, both in the sizes of the variations and also in the proportions of the population that are affected. Therefore, research is needed to identify the factors that affect individual sensitivity to radiation risk and to obtain realistic estimates of how large the differences may be in extreme cases and also the spread of sensitivities in average population groups. Epidemiology is the most direct way to estimate human risks. However, because low-dose risks are small and difficult to detect, additional approaches are also needed. In order to study genetic effects, including functional polymorphisms, and epigenetic effects that could modulate radiation risks, epidemiological studies with sufficient statistical power must be enhanced by combining with molecular characterisations of the individuals and supplemented with laboratory studies aimed at identifying the underlying mechanisms.
Individual Variability
Objective: To quantify how the sensitivity of individuals (or population subgroups) to induction of health effects depends on gender and age, genetic and epigenetic factors, lifestyle factors and concomitant exposure to other agents
__________________________________________
Relevance: protection of particular subgroups of population Carry out mechanistic studies on the potential of the above factors to modify individual responses to radiation using cellular/animal models (close coupling of experimental and modeling studies is essential) Continue/initiate studies of populations informative for assessment of potential modifying effects of the above factors (to include molecular epidemiology studies and identification of biomarkers) 2009 (Short-term) 2020 (Mid-term) 2030 (Long-term) Figure 4: Indicative research directions to address issues of individual variability and genetic susceptibility to cancer.

3.3 Radiation Quality (Type)
A wide variety of radiation types are present in environmental, occupational and medical exposures. It is well established that, on the basis of equal absorbed dose, some densely ionising (high-LET) radiations are considerably more effective than sparsely ionising radiations (low-LET, such as gamma-rays) in leading to biological changes, including the induction of cancer. Qualitative and quantitative differences between the biological effects arise mainly from the spatial (and temporal) energy deposition properties of the different radiation types, at the nanometer, micrometer and all higher levels. There is, however, very little human epidemiological information on which to base quantitative judgements on their relative effectiveness for inducing cancer or other effects.
What information does exist is not wholly consistent.
In the current radiation protection system, a simplifying assumption is made that the relative effectiveness of each radiation type is represented by a specified radiation weighting factor (wR), which is used to convert the physical absorbed dose in a tissue into the equivalent dose. The values of radiation weighting factor have been specified by the ICRP on its judgement, based mainly on laboratory studies of carcinogenesis and life shortening in rodents and selected short-term cellular effects in vitro. There are, however, limited epidemiological data that inform on the carcinogenic effects of alpha particles in some tissues. In one instance (i.e. radon and its decay products) the epidemiological data are sufficient to enable regulatory limits to be based directly on exposure concentrations, without the use of weighting factors. The same radiation weighting factors are, for simplicity, used irrespective of tissue (see also Shape of Dose Response above), dose rate, mode and heterogeneity of exposure with internal emitters (see also Internal Exposure Risk below), individual sensitivities (see also Individual Variability above) or other variables – even when there is scientific evidence to the contrary. Heterogeneity of exposure at the levels of the DNA, cells and tissues are particularly important considerations in this context and the possible influence of non-DNA-targeted effects is a further important complication. The scope for epidemiology to provide clear answers to these issues (apart from radon and a few other special cases) is limited due to lack of cohorts with sufficient statistical power, exposure uncertainties and the usually mixed nature of the radiation types. Therefore, specific strategies are needed for the assessment of the risk of low-dose, high-LET radiation. However, it is very important to continue and/or initiate well designed epidemiological studies of relevant populations that can provide significant information. Mechanistic understanding is required of the processes involved in radiation carcinogenesis generally, and in non cancer diseases (see also Non-Cancer Effects), and of the impact of radiation quality on key aspects, starting from track structure and physical interactions with various biological “targets”. A critical question is how
radiation quality affects the initial damage (DNA and non-DNA) and its time evolution (considering both faithful repair and mis-repair processes), the intraand intercellular signalling, and in general non-DNA-targeted effects. A deeper understanding is necessary of the relevance of clustered DNA damage from a single track, in inducing chromosome aberrations, mutations and carcinogenesis. Also the possible role of dose-rate needs to be understood better, together with mixed field effects (including possible synergistic and adaptive phenomena). Deeper investigation is still needed of the mechanisms that govern the possible different shapes of dose-effect curves and their specific dependence on radiation quality. This need applies both to cancer and to non-cancer risks. A systems biology approach for these radiation effects is advisable, with coordinated experimental, modelling and epidemiological studies to encompass the key processes from the initial radiation tracks that define the radiation quality through to the final health risks. Consideration also needs to be given to how radiation quality influences epigenetic phenomena and the occurrence of genomic instability.
Objective: Quantification of health effects of different radiation types and mixed fields
________________________________________
Relevance: the use of radiation weighting factors in radiation protection and application of different types of radiation in medical practice Radiation Quality (Type)
Carry out mechanistic studies on early and late responses to different radiation types and dose rates starting from physical interactions (close coupling of experimental and modeling studies is essential: experiments and models must be integrated within a systems approach at multiple scales, e.g. molecular, cellular, tissue, organ and organism) Continue and/or initiate epidemiological studies of populations informative for the study of effects of radiation of different types at different dose rates (see also Internal Exposures) 2009 (Short-term) 2020 (Mid-term) 2030 (Long-term)
Figure 5: Indicative research directions to address issues of radiation quality (type)

3.4 Internal exposure risks
It is currently assumed for radiation protection that ionising radiation from internal and external sources gives rise to similar effects on tissue. While external irradiation usually subjects tissues to a reasonably uniform irradiation, this is often not the case for internally-deposited radiation sources. For short-ranged emissions, such as alpha particles and Auger electrons6, the microscopic location of radionuclides within tissues is particularly important in relation to the cells at risk and the tissue structures. The situation is further complicated by differences in radiation quality (see above). Even at the level of whole tissues or major tissue components, estimation of average doses (or dose coefficients) from intakes of radionuclides requires highly complex biokinetic and dosimetric model calculations. These can be relatively accurate for some well-characterised and practically relevant situations such as in the nuclear power industry, but for others the uncertainty range can extend over orders of magnitude. Comparisons of risks derived from the ICRP dosimetric approach with those obtained from direct epidemiological observations in the few available situations, indicate that the discrepancies can vary from about a factor 2 in some cases to 10 or more in others.
Limits on intakes of internal emitters from the environment are currently regulated on the basis of their dose coefficients, calculated according to the ICRP methodology for effective dose. No explicit account is taken of questions on the appropriateness of the use of standard wR and wT values for these inhomogeneous internal emitters. Generally similar methods are used for the dosimetry of internal emitters in medical practice, which includes an increasing variety of radiopharmaceutical compounds for specific targeting in tissues; particularly in this case, there is insufficient awareness of the large uncertainties in some of the dose coefficients utilised. Epidemiological studies of particular groups with reliable exposure/dosimetric information could provide further quantification of effects (both cancer and non-cancer) from internally-deposited
radionuclides. These could include patients from diagnostic investigations and therapeutic treatments (e.g. iodine-131 and radionuclides labelled onto monoclonal antibodies), as well as wellcharacterised cohorts of workers and the public with substantial exposures to internal emitters incurred, in particular, during the early stages of the development of nuclear weapons (e.g. tritium and nuclides of strontium, caesium, uranium, plutonium). Experimental studies, particularly using in vivo animal models, are required to improve understanding of the mechanisms of health effects from heterogeneously deposited radionuclides in the body 6 Low-energy electrons emitted from atoms after some types of radioactive decay, and to improve biokinetic and dosimetric models for their assessment.
Internal Exposure
Objective: To better quantify the risk estimates from internal exposure
___________________________________
Relevance: robustness of systems of protection for intake of radioactive materials Continue and/or initiate epidemiological studies of populations informative for the study of effects of internal exposures of different types (see also Radiation Quality) Use in vivo models to better understand health effects of chronic and/or acute intake of radionuclides at low doses (especially
where deposition is heterogeneous) (see also stem cells in Shape of Dose Responses) Further develop and improve biokinetic and dosimetric models for chronic and acute exposure, including the estimation of uncertainties 2009 (Short-term) 2020 (Mid-term) 2030 (Long-term)
Figure 6: Indicative research directions to address issues of internal exposure risks.

19 3.5 Non-cancer effects
The current system of radiation protection is based primarily on protection against the risk of cancer from low doses of radiation. A small additional allowance is made for possible hereditary detriment. It is well established that moderate to high doses of radiation can increase the occurrence also of a variety of non-cancer effects in exposed individuals, but for radiation protection purposes it has generally been assumed that there is a threshold of dose below which no significant non-cancer effects (apart from hereditary disease) arise. Recent studies have, however, called into question this assumption, particularly in respect of circulatory diseases (i.e. heart disease and strokes), effects on cognitive function following radiation exposure in infancy and occurrence of opacities in the lens of the eye (cataract) (UNSCEAR 2008a). In each case
epidemiological studies have suggested the possibility that these effects may arise after exposure to much lower doses than previously thought and possibly within the range of low doses encountered in the use of radiation in industry and medicine. The mechanisms behind these non-cancer effects are not well understood and they need to be investigated, including the potential roles of nontargeted effects (UNSCEAR 2008b).
For their recent recommendations, the ICRP judged that the data available for these non-cancer diseases do not allow for their inclusion in the estimation of detriment following low radiation doses (ICRP 2008). If a linear no-threshold response were to apply (or be assumed to apply) to circulatory disease, however, then on the basis of the present epidemiology of the A-bomb survivors this risk factor may be of sufficient magnitude to require explicit incorporation into the
radiation protection system, on a comparable basis to that for cancer. This could imply changes to dose limits and constraints, but also structural changes to tissue and radiation weighting factors and other aspects. Exposures in infancy and possible effects on the developing brain need further investigation, particularly in the context of medical exposures. Well-controlled epidemiological approaches will continue to be essential in addressing each of these areas. However, new more-suitable animal models also need to be developed for mechanistic studies of circulatory effects at low doses and for effects on learning and cognitive functions. Better understanding is also needed of the extent to which some biological modifications observed in
animals exposed chronically to low levels of radionuclide contamination (eg, uranium, caesium nuclides) could lead to clinical effects.
Although judgements on heritable risks following gonadal dose are relatively well developed, it remains important to keep the topic under review and to retain scientific competence to undertake further studies if new issues are revealed.
Non-Cancer Effects
Objective: To better understand the mechanisms of and quantify the risks for non-cancer health
effects (in particular lens opacities, cardio- and cerebro-vascular diseases, impaired cognitive function) resulting from exposure to low and protracted doses
____________________________________________
Relevance: contribution of non-cancer diseases to radiation risk, and its implications for radiation
protection systems Develop and use in vivo/in vitro experimental models to better understand
mechanisms of induction of non-cancer diseases (including observations at low doses;
time windows; early and delayed tissue responses; functional and physiological alterations);
Integrate development of predictive tissue and system-specific mathematical models of tissue-level responses (close coupling of experimental and modeling studies is essential) Seek better understanding of dose-response relationships for non-cancer diseases through epidemiological studies of populations exposed to a wide range of ionizing radiations Heritable effects: Keep developments in human and mouse genetics under review and undertake further
studies if new issues are revealed 2009 (Short-term) 2020 (Mid-term) 2030 (Long-term)
Figure 7: Indicative research directions to address issues on risks from non-cancer effects

4. Proposed European research strategy
A broad consensus exists within the HLEG on the policy issues to be addressed and the directions of future research that currently offer the best prospects for resolving these issues (see Chapter 3). This consensus provides a sound conceptual basis on which to proceed but, alone, it is not sufficient. It needs to be complemented by more strategic and practical considerations, in particular how to translate the concept into practice in the light of a number of important impediments to its realisation. Many difficulties lie ahead, not least because of the complexity of the issues, of the large uncertainties that need to be overcome, and of the very limited convergence so far achieved between national research strategies and programmes, notwithstanding the efforts in this direction of the European Research Framework Programmes. The establishment of the following two elements will be critical in terms of making tangible progress: - A trans-national structure capable of ensuring appropriate governance of research in this field, in the pursuit of a long term shared vision: · bringing together the programmes of the various funding bodies and research organisations into a coherent and optimized ensemble, thus
ensuring long term research funding in accordance with an agreed strategic research agenda (SRA);
· interfacing with the many stakeholders, in particular regulatory bodies and the broader scientific community;
· overseeing investments in key infrastructures, as well as knowledge management, training and education;
· ensuring the consistency of research methodologies.
For this purpose, it is proposed to take an initiative, which we have called the Multidisciplinary European LOw Dose Initiative (“MELODI”). Subject to further consultations, such a concept could take the shape of a new platform, with a structure similar to those proposed in the Commission’s research policies7.
- A scientific strategy in order to structure the research programmes in the most effective way, taking into account available resources. This strategy would constitute the backbone of the SRA, progressively bringing together otherwise separate actors, research programmes, and scientific communities, facilitating linkage where needed between disciplines, and facilitating investment into areas of high risk research. Much of the research will be of an applied nature and clearly targeted towards resolving the key policy issues set out in the report.
More basic research will, however, be an essential component of any low dose risk programme given the nature of the challenges to be faced and the timescales required for the resolution of some of them, i.e., in some areas knowledge accumulation would be the only way to proceed at present. This type Consideration could also be given to a Joint Programming Initiative.

of research would to some extent include high-risk/high-gain (potential) research in order to test new ideas which might be at the margin of the current state of knowledge.
4.1 The “MELODI” initiative
“MELODI” would sustainably associate funding bodies and research organisations in Europe with significant programmes in low dose risk research with the aim to integrate future research. The representatives of the six national funding bodies participating in the HLEG are committed to launch an initiative, such as “MELODI”, subject to further consultation. Appropriate arrangements will be made within MELODI to involve any research organisation that is willing and able to contribute to its goals. These would include those who can contribute to specific areas of research and especially those who can bring other pertinent perspectives and expertise to the low dose field. “MELODI” would actively engage with all potential contributors from the wider scientific community and devise mechanisms for their inclusion. MELODI would be developed in a step by step process. Initially, MELODI would focus on the means to achieve a fully integrated and sustainable approach to low dose risk research in Europe and of the related governance structure. In addition, a more detailed road map would be developed to address the priorities identified in the SRA to provide a framework for better direction and integration of future research.
An example of a possible governance structure is illustrated in Figure 8, taking after the model of an already existing Platform. The main participants in the platform would be national funding bodies and research organisations (i.e., national institutes, universities, etc) with significant low dose risk research activities. Effective links would also need to be established with key stakeholders, in particular regulatory bodies and users of radiation and radioactive material in industry and medicine who will be the ultimate clients for this research.
23
Governing
Board
Executive Committee
Education and
Training/
Knowledge
Management
Infrastructures
& shared use
Research
Agenda
Funding
mechanisms and
sustainable
integration
International
and ex-MELODI
Collaboration
Industry, Medicine,
Other stakeholders
RP authorities
Operations/Output
National, bi/multi-national, FP projects
Integration and dissemination of outcomes
European view on low dose risk issues
Figure 8: Possible governance structure for “MELODI”
4.1.1 The need for a structure such as “MELODI”
Many of the larger Members States of the EU have significant research activities on Low Dose Risk Research and a few have dedicated programmes. Up to now there has been little effort or commitment to integrate these national activities/programmes. “MELODI” would better integrate these programmes and activities and make better use of limited resources and exploit synergies for future work. Given the nature, scale and importance of the challenges to be addressed in low dose risk research and the competition for scarce resources, effective integrated collaboration at a European, if not international level, is long overdue. Current understanding and quantification of risk at low doses is limited by the uncertainties of the available scientific methods and by a lack of understanding of the basic biological mechanisms. This situation can only be improved by a long term commitment of all scientific disciplines involved, a shared view on the roles of these disciplines within a research strategy and a common vision among the research community.
Integration of low dose risk research at the European level would strengthen the European position in further developing radiation protection standards. This could for example be achieved by major periodic reviews of the knowledge on risks of radiation at low doses – based on epidemiological and mechanistic studies and the development of scientific views on major emerging scientific or policy issues related to low dose risk.
4.1.2 Interaction with stakeholders
The very nature of the policy questions to be answered by low dose risk research and the complexity of the scientific issues to be addressed requires a continuous dialogue with all stakeholders involved, e.g. the society and the public authorities responsible for protection as well as those using radioactive substances or ionising radiation in industry or medicine. One of the aims of such a dialogue is to increase awareness of the current knowledge of low dose risks with the ultimate goal of further developing institutional trust and a safety culture at all levels of
operation. One aspect of such a dialogue is to provide feedback on the practical needs and questions arising during the application of ionising radiation in everyday life to researchers, and vice-versa. Another potentially more important consideration is to raise awareness among users and producers of radioactive material and/or ionising radiation in industry and medicine of the need for, and importance of, low dose risk research and for them to make a more significant
contribution to its funding.
4.1.3 Interaction with the broader scientific and health community
A comprehensive and systematic understanding of the biological processes that lead to cancer, and other relevant diseases, and also the identification and quantification of the particular roles played by radiation in the processes can only be achieved within the context of the broad advances in biological and medical knowledge through basic and applied research. This requires an intensive scientific exchange with disciplines outside the classical areas of radiobiology, nuclear physics, radioecology, and (molecular) epidemiology, such as with cancer research, genetics and biomedical research more generally. Current understanding and quantification of risk at low doses can only be improved by a long term commitment of all scientific disciplines involved, a shared view on the roles of these disciplines within a research strategy and a common vision among the research community at national and European level and beyond. “MELODI”would facilitate the establishment of effective, timely and sustainable links with the broader biological research communities, in particular to take advantage of emerging developments elsewhere.
4.1.4 Research infrastructures
Research infrastructures are essential for low dose risk research. The types of facilities required are diverse. They include laboratory infrastructures such as large accelerator facilities, dedicated animal facilities, databases or tissue banks, and arrangements for long term access to trans-national cohorts for epidemiological studies and for their maintenance.

One of the early priorities of “MELODI” would be to establish an inventory of European infrastructures and future needs in each of the above areas in order to achieve the SRA goals.
Radiation facilities
Existing infrastructures will have to be reviewed and, where necessary, improved. Sufficient human resources must be allocated. Very few facilities offer the full range of equipment required for radiobiology experiments; modernization and maintenance need to be evaluated for those facilities involved in low dose risk research projects. Some facilities, although unique in Europe, are “pseudo-dormant” such as Razès (radon Inhalation) and are at high risk of being dismantled in the coming years. It is necessary to identify the issues that need to be addressed in respect of
provision (including dosimetry and radiobiological/animal facilities), modernization, maintenance, sustainability (medium and long term) and accessibility of facilities. The need for new infrastructures required for European low dose research (such as for chronic low dose rate exposure and microbeams) needs to be assessed along with how these infrastructures might be provided and used jointly by overseas partners (Chalk River, Canada; IES, Japan) or how these would have to be implemented in Europe, to maximise the future impact of research in this field.
Data bases and tissue banks Irradiation experiments generate large sets of biological samples and data that are gathered in tissue banks and databases. Indeed, many of them exist although they are rather dispersed, heterogeneous and frequently dormant. Optimal utilisation of the banks and access to data and material would need a survey of what currently exists, characterisation of the quality of the samples, validation of their storage conditions and accessibility to European scientists. Large networking effort will permit the identification of the “missing links” and maximisation of the potential usefulness of European databases and samples
banks.
Platforms for analysis
Many infrastructures are required for analysis such as platforms of highthroughput cell biology, genotyping and genetics, gene expression, animal phenotyping, microscopy and imaging of living cells and organisms, proteomics and computing centres. Limiting factors include their proximity to radiation facilities, their accessibility and their time response.
Trans-national cohorts
Over recent decades, much effort has been invested in the constitution of (often) trans-national epidemiological cohorts of populations (uranium miners, nuclear workers, medically exposed groups, residential radon exposures, etc.) potentially informative for low dose risk research. Additional cohorts are also being identified (patients with substantial paediatric diagnostic exposures) and collaborative international studies are being carried out on other non-EU cohorts of particular interest for low dose rate research (e.g. Mayak workers, Techa river cohort, Chernobyl liquidators). Having invested in the constitution, dose assessment and follow-up of these cohorts, it is essential to maximise their informativeness and therefore the return on these investments. In this context a survey of existing cohorts should be conducted, the information collected and documented, their informativeness evaluated, and data storage conditions and availability to European researchers be assessed. In addition mechanisms need to be set-up to ensure their continued availability for research, including database management and periodic
updates of follow-up in the foreseeable future. Where necessary, harmonisation of the collected data and of the methods for collecting them needs to be strengthened, so as to improve the statistical power of epidemiological studies by interlinking them more easily.
4.1.5 Education and training
Many European member states have lost key competences and are no longer capable of independently retaining their current research activities in radiation sciences, with implications for effectively fulfilling operational and policy needs and obligations. Programmes aiming at knowledge management across generations have to be designed in a way that they achieve sustainable results. In this respect several aspects have to be considered. One is that the underlying scientific programmes have to address questions that are attractive to both young scientists and faculties of universities or to the management of research organizations. In the
long term such programmes cannot be successful unless they do provide job opportunities to young scientists. Given the current situation, sustainability of such programmes can only be achieved by a long-term commitment of funding bodies.
“MELODI” would respond effectively to these needs and aim at establishing an integrated approach to education and training (E&T) in radiation research in Europe. Particular consideration will be given to the better integration of research and teaching at Universities and at non-university research organisations. Existing elements of ongoing E&T activities such as the European MSc course should be strengthened, making it Bologna8 compliant. International networking of education and training programmes would be beneficial. It would not only ease The Bologna Process is the process of creating the European Higher Education Area (EHEA) and is based on cooperation between ministries, higher education institutions, students and staff from 46 countries, with the participation of international organisations.

the burden of researchers engaged in education and training but would also broaden the scientific background of the training programmes and contribute to increasing the mobility of the trainees. Graduate school(s) of radiation sciences would to some degree alleviate the lack of sufficient geographically situated experts. One option would be a virtual European school, with an exchange of students between host institutes; the alternative would be a centralized European Graduate School with input from seconded experts.
4.1.6 SRA funding and operational management
Initially the funding and operational management of the activities of ”MELODI” would be based on the existing arrangements, resources and responsibilities of the partners of ”MELODI”. Following the establishment of “MELODI”, a critical inventory of ongoing and planned low dose research projects including the identification of potential synergies for deeper collaboration/ integration would be established. Key elements of such an assessment are the identification of the inventory of existing infrastructures and of education and training as well as future needs. Based on such an inventory, a strategy for better integrating the research, infrastructures and other activities would be developed. This would include elements of shared responsibilities for setting research priorities at a European level as well as mechanisms for shared funding of short, medium and long term projects. In addition, mechanisms would need to be established for the
collaboration/interaction between the research programme of “MELODI” and non- European programmes and European organisations that are not members of the initiative:
- Regular, i.e., yearly review of the structural and planning arrangements of the initiative, to adjust to emerging needs;
- Strategies for education and training and knowledge management as well as for infrastructures and their shared use;
- Coordination of national/multinational calls for research projects best able to address/resolve the policy issues.
Performance indicators would be established at the outset to measure progress in relation to sustainable integration, which would be a sine qua non for “MELODI”. Budgetary questions have only briefly been addressed by the HLEG. The indicative cost, over a 20 year period, of an integrated European low dose research programme with good prospects for resolving the identified policy issues is judged to be of the order of one billion Euro.
4.2 Scientific strategy
It is unlikely that research aiming at the better understanding of the basic mechanisms of radiation risk and quantification of health risks at low doses will be successful unless the main funding and research organizations commit themselves to fund and implement well-structured programmes over an extended period of time. A shared long term vision, not only of objectives but also of scientific strategy, is therefore needed. Four key concepts have been identified that should be incorporated into the scientific strategy for a multi-disciplinary low dose initiative to become viable:
- Holistic approach: Because of the many interrelations which exist between the various policy issues or research objectives, future research programmes should adopt a holistic approach. Seeking the active collaboration of many different disciplines and actively reaching out to
the wider community of advanced biology research will be critical. In particular there is a need to move away from or rise above the more traditional “organ pipe” structure where specialists of a given area are, de facto, in charge of defining their own research objectives and related
actions.
- Periodic review of objectives: Given the complexity of the policy issues to be resolved, the SRA will need to span a relatively long period, say twenty years. During this time, adjustments to the research strategy will need to be kept under continuous review and adjustments made at intervals. It is essential that such reviews provide adequate information to evaluate the ongoing contribution of the research to the robustness of the radiation protection systems (i.e., the key policy issues). This should be done in the context of the evolving needs of society and the end users of research results and of the broader advances in biomedical science.
- Dissemination of research outcomes and interaction with users: A considered strategy and appropriate mechanisms would need to be put in place to ensure effective dialogue with key stakeholders, in particular regulatory bodies and users of radiation and radioactive material in
industry and medicine. As end users of the research outcomes, their needs will continue to be influential in the scope and content of the programme.
- Ensuring that key prerequisites are met: Beyond the availability of adequate infrastructures, funding, and research personnel, the SRA will identify some “barriers” or "impediments" that must be overcome before further progress can be made. The programming and funding system to be set up under “MELODI” would need to be conceived and implemented so as to ensure that, where necessary, resources will be directed to “barrier solving” before “barrier dependant” programmes are initiated.
4.2.1 Holistic approach
The SRA will aim to overcome one of the major impediments to making effective progress in ongoing and recent research in this area, i.e., the failure to fully integrate the many disciplines involved within a coherent vision and programme, in particular between the experimental and theoretical scientific communities. The SRA will engineer programmes which bring together mechanistic studies, modelling (at multi scale levels whenever appropriate), epidemiology, dosimetry, etc. The programmes will take on board the most recent paradigms developed in radiobiology (such as non-targeted effects), and in fundamental biology (systems biology, carcinogenesis), and solicit the most recent investigative techniques (tracer biology, track analysis, microdosimetry). This will require, inter alia, the development of closer links between the radiobiology and epidemiology communities and other disciplines involved in fundamental biology.
Figure 9 provides a schematic representation of the suggested ambition of
“MELODI” to accelerate the understanding and better quantification of low dose
risks (or reduction in their uncertainties) over a 20 year period.
Low dose Risk
Uncertainties
Figure 9: A new holistic approach to accelerate over 20 years the reduction of uncertainties in the understanding of low dose risks
4. 2. 2 Periodic review of objectives and dissemination of outcomes
In addition to the continuous review that will be put in place to ensure the SRA remains fully responsive in addressing policy issues, emerging needs and scientific progress, periodic review and dissemination meetings would be organized under the framework of “MELODI”. Fully open to all the concerned R&D community, the radiation protection community and to other stakeholders, these meetings should result in an assessment of the progress in implementing the SRA, and of the perspective for strengthening, at the operational and policy levels, the radiation protection system. Such strengthening could result either from validation of existing radiation protection policy or practice, thereby reinforcing the societal robustness of the system, or from identifying the need or desirability for change in order to reflect new scientific findings. Such a process would enhance Europe's position in the further development of radiation protection policy and practice internationally.
4.2.3 Ensuring that key prerequisites are met
The proposed holistic approach to future low dose risk R&D will only be successful if there is a full and shared commitment to multidisciplinary research carried out in an operationally effective manner. This can be best illustrated through three examples:
- Advanced multiscale in vitro and animal models reflecting radiation dose/effect at low doses and low dose rates (chronic exposure) should be developed in such a way that they can relate to the most advanced research on the phenomena of induction of cancer and non cancer diseases potentially associated to radiation exposure. This will require the association of dosimetrists and radiobiologists with research teams involved in fundamental biology.
- Integrated studies, associating theoretical and experimental modelling should become a preferred approach. This will also lead to closer cooperation between research teams working in the different disciplines, including epidemiologists. It requires, however, a change from current
practice in defining the R&D projects, as illustrated in the initial SRA outline.
- Systematic efforts should be made to increase the statistical power of epidemiological information. This objective may be pursued through the further integration of existing cohorts into multinational well harmonized instruments which will be able to reliably capture information needed to feed the above mentioned models. Thus, while cohorts will continue per se to offer valuable information, particularly for the radiation protection community, epidemiology projects should also be designed to contribute directly to research programmes of wider scope.

4.2.4 SRA roadmap outline
It is obviously premature, in the framework of the HLEG, to establish a fully blown definitive SRA for the next 20 years. However, in order for all stakeholders to appreciate the potential extent of “MELODI”, figures 3 to 7 in Chapter 3 have been shaped in such a way as to give an initial representation of the research directions that are expected to be most productive over the short, medium and long term, and to indicate the possible dynamics of such programmes over time, subject to further consultations.
An important initial effort would be needed within “MELODI” in order to quantify the financial resources needed in the different areas over 20 years. It would be necessary to take into account the likely duration of the programmes, and the sizes of the research teams. The costs of modernizing and operating key infrastructures would have also to be included. Detailed programming would have to be established once the overall SRA approach has been validated, and this would in turn lead to amore precise assessment of funding needs over time. These programmes would be conceived so as to embody the “holistic approach”, to identify in each area the key deliverables to be expected, for the first 5 year period, and to allocate funding adequately.
The implementation of such a coherent process at a European level, in the framework of a sustainable structure such as “MELODI”, would undoubtedly consolidate European research at the best level of international excellence, making this challenging and difficult field of low dose risks from ionising radiation an attractive proposition for researchers worldwide.
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French Academy Report (2005). Dose-effect relationships and estimation of the carcinogenic effects of low doses of ionizing radiation (http://www.academiesciences. fr/publications/raports/pdf/dose effect 070405gb.pdf).
ICRP (2007) The 2007 Recommendations of the International Commission on Radiological Protection. ICRP Publication 103. Annals of the ICRP 37 (2-4).
Elsevier Science Ltd, Oxford.
NRC (National Research Council) (2006). Health risks from exposure to low levels of ionizing radiation. BEIR VII Report, Phase II. National Academy Press, Washington, DC.
UNSCEAR (2000). United Nations Scientific Committee on the Effects of Atomic Radiation. Sources and Effects of Ionizing Radiation. Vol. II Effects. UNSCEAR 2000 Report to the General Assembly with Scientific Annexes, United Nations, New York.
UNSCEAR (2008a). United Nations Scientific Committee on the Effects of Atomic Radiation. Vol. I. UNSCEAR. 2006 Report to the General Assembly with Scientific Annexes, United Nations, New York.
UNSCEAR (2008b). United Nations Scientific Committee on the Effects of Atomic Radiation. Vol. II. UNSCEAR. 2006 Report to the General Assembly with Scientific Annexes, United Nations, New York.

étude CANUPIS sur le cancer de l’enfant à proximité de centrales nucléaires

COMMUNIQUÉ POUR LES MÉDIAS
Date Berne, le 9 septembre 2008

L’étude CANUPIS sur le cancer de l’enfant à proximité de centrales nucléaires a démarré
Les travaux relatifs à l’étude suisse sur le cancer des enfants domiciliés à proximité de centrales nucléaires ont démarré en septembre. Cette étude dite CANUPIS a été mandatée par la Ligue suisse contre le cancer et par l’Office fédéral de la santé publique (OFSP). Elle est menée par le Registre suisse du cancer de l’enfant, en collaboration avec l’Institut de médecine sociale et préventive de l’Université de Berne et le Groupe d’oncologie pédiatrique suisse (SPOG). Les résultats seront publiés en 2011.
L’étude CANUPIS («Childhood Cancer and Nuclear Powerplants in Switzerland») découle d’une étude allemande dont les résultats ont été publiés à la fin de l’an dernier. L’étude allemande sur le cancer de l’enfant fait apparaître un risque accru de cancer, en particulier de leucémie, chez les enfants de moins de cinq ans vivant à proximité immédiate d’une centrale nucléaire. L’étude CANUPIS entend examiner si ce risque est également présent à proximité des centrales nucléaires suisses.
Une conception optimisée L’étude allemande a été menée avec beaucoup de soin, mais, à l’instar de nombreuses études antérieures, elle présente certaines faiblesses. C’est pourquoi les concepteurs de l’étude CANUPIS ont optimisé certains points: d’une part, leur étude porte sur l’ensemble des enfants nés en Suisse entre 1985 et 2007, d’autre part, elle ne considère pas uniquement le domicile où vivaient les enfants malades du cancer au moment du diagnostic, mais aussi tous leurs lieux de domicile antérieurs en remontant jusqu’à leur naissance.
Telle qu’elle a été conçue, l’étude suisse présente des avantages considérables: elle permet de mesurer aussi une possible influence des centrales nucléaires sur les phases très précoces de la vie. Par ailleurs, elle cherche aussi à déterminer quels pourraient être les facteurs à l’origine d’un risque de cancer accru (par exemple le rayonnement ionisant, les champs électromagnétiques ou les nuisances industrielles).
Ligue suisse contre le cancer, CP 8219, CH-3001 Berne, Téléphone +41 (0)31 389 91 00, Fax +41 (0)31 389 91 60 Adresse de livraison (paquets): Effingerstrasse 40, CH-3008 Berne, info@swisscancer.ch, www.swisscancer.ch Compte postal 30-4843-9, Credit Suisse, St-Gall, N° compte 4637-155480-01, N° TVA 338 921
Une étude complète grâce à des bases de données couvrant tout le territoire suisse
L’étude repose sur les données du Registre suisse du cancer de l’enfant tenu par l’Institut de médecine sociale et préventive de l’Université de Berne. Ce registre répertorie tous les cancers diagnostiqués chez des enfants sur le territoire national depuis 1976. Pour la comparaison avec les enfants en bonne santé, l’étude recourt aux données de la «Swiss National Cohort», un jeu de données anonymes couvrant l’ensemble de la Suisse, basé sur les recensements de 1990 et 2000, ainsi que sur d’autres statistiques.
La réalisation de l’étude CANUPIS durera environ deux ans et demi. Les résultats seront publiés en 2011. L’étude CANUPIS a un coût total de 820 000 francs qui sera pris en charge pour moitié par la Ligue suisse contre le cancer et pour moitié par l’OFSP. Les producteurs d’électricité Axpo et BKW FMB versent une contribution financière dont la gestion est confiée à l’OFSP. Les deux groupes électriques suisses n’ont aucun moyen d’influencer ni la conception de l’étude, ni la publication de ses résultats. La qualité scientifique et l’indépendance de l’étude sont garanties par un comité consultatif qui rassemble six experts de France, des Pays-Bas, d’Allemagne, de Grande-Bretagne, des Etats-Unis et de Suisse, actifs sur le plan international.
Si vous avez des questions, veuillez vous adresser à:
– Rolf Marti, Dr rer. nat., responsable du Secrétariat scientifique, Ligue suisse contre le cancer, tél.: 031 389 91 45, rolf.marti@krebsliga.ch
– Werner Zeller, Dr phil. nat., chef de la division radioprotection, Office fédéral de la santé publique (OFSP), tél.: 031 322 96 03, werner.zeller@bag.admin.ch
– Claudia Kuehni, PD Dr med., chargée du projet, directrice du Registre suisse du cancer de l’enfant, tél.: 031 631 35 07, kuehni@ispm.unibe.ch

Matthias Egger, Prof. Dr med., directeur de l’Institut de médecine sociale et préventive (IMSP), Université de Berne, tél.: 031 631 35 01, egger