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lüll Improvement of accuracy of chromosome aberration analysis for biological radiation dosimetry Kanda RJ Radiat Res 2000[Mar]; 41 (1): 1-8The frequency of chromosome aberrations in circulating lymphocytes is accepted as being the most reliable indicator of the absorbed dose of radiation. Researches done to improve the accuracy of cytogenetic analysis are described in this review. These include investigations of in vitro factors that affect the yield of radiation-induced aberrations and of in vivo factors that affect the chromosomal radiosensitivity of individuals. Improved chromosome-painting methods for accurate judgment of dicentrics and translocations are introduced. The practicality of these advanced cytogenetic techniques is shown by examinations of individuals exposed in the radiation accident at Tokaimura in 1999.|*Accidents, Occupational[MESH]|*Chromosome Aberrations[MESH]|*Chromosome Painting[MESH]|*Radioactive Hazard Release[MESH]|Chromosomes, Human/drug effects/radiation effects/*ultrastructure[MESH]|Demecolcine/pharmacology[MESH]|Dose-Response Relationship, Radiation[MESH]|Humans[MESH]|Japan[MESH]|Lymphocytes/drug effects/ultrastructure[MESH]|Radiation Tolerance[MESH]|Radiometry/*methods/standards[MESH]|Uranium[MESH] |