Acknowledgements |
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v | |
Group photo |
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vii | |
Organizing Committee |
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ix | |
Preface |
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xi | |
Greeting |
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xiii | |
Addresses |
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xv | |
Overview of COE program |
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The seven projects and their achievements in 5 years that provide new post-COE concepts |
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3 | (10) |
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Post-COE: World health and radiation environment |
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13 | (8) |
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The first target of radiation carcinogenesis is not DNA |
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21 | (6) |
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Reports from the former USSR countries |
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Thyroid cancer in Belarus after Chernobyl |
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27 | (5) |
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Childhood thyroid cancer in Belarus |
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32 | (7) |
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Radiological health effects 20 years after the Chernobyl accident: Data of the National Radiation and Epidemiological Registry |
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39 | (7) |
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Thyroid gland and radiation (fundamental and applied aspects): 20 years after the Chernobyl accident |
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46 | (8) |
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Chernobyl: Current situation of non-cancer diseases |
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54 | (6) |
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Health conditions of the population and some outcomes of the international collaborative research programs in the Semipalatinsk region of Kazakhstan |
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60 | (7) |
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Studies on atomic bomb survivors and related issues |
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Late hematological effects in the atomic bomb survivors |
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67 | (6) |
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Long-term health consequences of atomic bomb radiation: RERF Life Span Study |
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73 | (8) |
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Systematic collection of tissue specimens and molecular pathological analysis of newly diagnosed solid cancers among atomic bomb survivors |
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81 | (6) |
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Cancer risk analysis of low-dose radiation exposure |
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87 | (14) |
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Concepts needed to understand potential health effects of chronic low-level radiation exposures: Role of adult stem cells and modulated cell--cell communication |
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101 | (13) |
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Mechanism of radiation carcinogenesis: βigH3, COX-2 and beyond |
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114 | (7) |
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New insights on radiation-induced bystander signalling and its relationship to DNA repair |
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121 | (7) |
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Towards resolving conflicting reports of radiation-induced genomic instability in populations exposed to ionizing radiation: Implications for the hibakusha |
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128 | (7) |
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Indirect mechanisms of radiation induced genomic instability at repeat loci |
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135 | (11) |
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The role of telomere dysfunction in driving genomic instability |
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146 | (4) |
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Secretory clusterin (sCLU) is a hallmark sensor of DNA damage, cell stress, and cellular senescence: Evidence for similar regulation of sCLU expression after cellular stress and replicative senescence |
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150 | (8) |
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NBS1 and MRE11 associate for responses to DNA double-strand breaks |
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158 | (9) |
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The Chernobyl Tissue Bank, an international collaboration to investigate the relationship between the exposure to radiation in childhood and thyroid cancer |
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167 | (7) |
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Benefit and side effects of radioiodine therapy in radiation-induced childhood thyroid carcinoma |
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174 | (9) |
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Telemedical technologies in education: Experience of introduction and prospect of development at Gomel State Medical University, Belarus |
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183 | (6) |
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Education and training for radiation emergency medical management in Japan |
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189 | (7) |
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Reconstruction for local radiation injuries and proposed regeneration therapy for acute systemic radiation injuries |
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196 | (7) |
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Therapeutic angiogenesis by autologous transplantation of bone marrow mononuclear cells for peripheral artery disease |
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203 | (10) |
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213 | (2) |
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215 | (4) |
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Chernobyl, radiation and thyroid cancer |
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219 | (8) |
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Frontier techniques of radiation biology |
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Joint research project of genetic diagnosis of papillary thyroid cancer between Semipalatinsk Medical Academy and Nagasaki University |
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227 | (8) |
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Growth of IR-induced foci and G1 checkpoint |
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235 | (4) |
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Epigenetic regulations of chromatin dynamics: A role of noncoding RNAs in epigenetic activation of Drosophila Hox genes |
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239 | (3) |
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Telomere biology: Implications for radiation carcinogenesis |
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242 | (9) |
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RET oncogene amplification in thyroid cancer: Correlations with radiation-associated, high-grade malignancy, and genomic instability |
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251 | (5) |
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Pathology of thyroid cancer in children and adolescents of Ukraine having been exposed as a result of the Chernobyl accident |
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256 | (7) |
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Immunoexpression of MUC1 in papillary thyroid carcinoma: An association with aberrant expression of β-catenin and cyclin D1 overexpression |
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263 | (10) |
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Lectures by senior thyroid pathologists |
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Culture system for studying thyroid biology |
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273 | (8) |
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Hashimoto's thyroiditis: Is the epithelium premalignant? |
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281 | (8) |
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List of participants |
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289 | (6) |
Author index |
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295 | (2) |
Keyword index |
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297 | |