Estimating partial-body ionizing radiation exposure by automated cytogenetic biodosimetry

被引:13
|
作者
Shirley, Ben C. [1 ]
Knoll, Joan H. M. [1 ,2 ]
Moquet, Jayne [3 ]
Ainsbury, Elizabeth [3 ,4 ]
Ngoc-Duy Pham [5 ]
Norton, Farrah [6 ]
Wilkins, Ruth C. [7 ]
Rogan, Peter K. [1 ,8 ,9 ]
机构
[1] CytoGnomix Inc, London, ON, Canada
[2] Univ Western Ontario, Dept Pathol & Lab Med, London, ON, Canada
[3] Publ Hlth England, Cytogenet Grp, Oxford, England
[4] Publ Hlth England, Chromosome Dosimetry Serv, Oxford, England
[5] Dalat Nucl Res Inst, Biotechnol Ctr, Da Lat, Vietnam
[6] Canadian Nucl Labs, Biodosimetry Emergency Response & Res Capabil, Chalk River, ON, Canada
[7] Hlth Canada, Ionizing Radiat Hlth Sci Div, Ottawa, ON, Canada
[8] Univ Western Ontario, Dept Biochem, London, ON, Canada
[9] Univ Western Ontario, Dept Oncol, London, ON, Canada
关键词
Ionizing radiation; biodosimetry; chromosomal aberrations; inhomogeneous exposure; software automation; HUMAN-LYMPHOCYTES; DOSE ASSESSMENT; DOSIMETRY; ASSAY;
D O I
10.1080/09553002.2020.1820611
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Purpose Inhomogeneous exposures to ionizing radiation can be detected and quantified with the dicentric chromosome assay (DCA) of metaphase cells. Complete automation of interpretation of the DCA for whole-body irradiation has significantly improved throughput without compromising accuracy, however, low levels of residual false positive dicentric chromosomes (DCs) have confounded its application for partial-body exposure determination. Materials and methods We describe a method of estimating and correcting for false positive DCs in digitally processed images of metaphase cells. Nearly all DCs detected in unirradiated calibration samples are introduced by digital image processing. DC frequencies of irradiated calibration samples and those exposed to unknown radiation levels are corrected subtracting this false positive fraction from each. In partial-body exposures, the fraction of cells exposed, and radiation dose can be quantified after applying this modification of the contaminated Poisson method. Results Dose estimates of three partially irradiated samples diverged 0.2-2.5 Gy from physical doses and irradiated cell fractions deviated by 2.3%-15.8% from the known levels. Synthetic partial-body samples comprised of unirradiated and 3 Gy samples from 4 laboratories were correctly discriminated as inhomogeneous by multiple criteria. Root mean squared errors of these dose estimates ranged from 0.52 to 1.14 Gy(2)and from 8.1 to 33.3%(2)for the fraction of cells irradiated. Conclusions Automated DCA can differentiate whole- from partial-body radiation exposures and provides timely quantification of estimated whole-body equivalent dose.
引用
收藏
页码:1492 / 1503
页数:12
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