Literature DB >> 9119674

Early dose assessment following severe radiation accidents.

R E Goans1, E C Holloway, M E Berger, R C Ricks.   

Abstract

Early treatment of victims of high level acute whole-body x-ray or gamma exposure has been shown to improve their likelihood of survival. However, in such cases, both the magnitude of the exposure and the dosimetry profile(s) of the victim(s) are often not known in detail for days to weeks. A simple dose-prediction algorithm based on lymphocyte kinetics as documented in prior radiation accidents is presented here. This algorithm provides an estimate of dose within the first 8 h following an acute whole-body exposure. Early lymphocyte depletion kinetics after a severe radiation accident follow a single exponential, L(t) = L(o)e(-k(D¿t), where k(D) is a rate constant, dependent primarily on the average dose, D. Within the first 8 h post-accident, K(D) may be calculated utilizing serial lymphocyte counts. Data from the REAC/TS Radiation Accident Registry were used to develop a dose-prediction algorithm from 43 gamma exposure cases where both lymphocyte kinetics and dose reconstruction were felt to be reasonably reliable. The inverse relationship D(K) may be modeled by a simple two parameter curve of the form D = a/(1 + b/K) in the range 0 < or = D < or = 15 Gy, with fitting parameters (mean +/- SD): a = 13.6 +/- 1.7 Gy, and b = 1.0 +/- 0.20 d(-1). Dose estimated in this manner is intended to serve only as a first approximation to guide initial medical management.

Mesh:

Year:  1997        PMID: 9119674     DOI: 10.1097/00004032-199704000-00001

Source DB:  PubMed          Journal:  Health Phys        ISSN: 0017-9078            Impact factor:   1.316


  30 in total

1.  Modeling analysis of the lymphocytopoiesis dynamics in chronically irradiated residents of Techa riverside villages.

Authors:  Olga A Smirnova; Alexander V Akleyev; Georgy P Dimov
Journal:  Radiat Environ Biophys       Date:  2014-03-29       Impact factor: 1.925

2.  Animal models for medical countermeasures to radiation exposure.

Authors:  Jacqueline P Williams; Stephen L Brown; George E Georges; Martin Hauer-Jensen; Richard P Hill; Amy K Huser; David G Kirsch; Thomas J Macvittie; Kathy A Mason; Meetha M Medhora; John E Moulder; Paul Okunieff; Mary F Otterson; Michael E Robbins; James B Smathers; William H McBride
Journal:  Radiat Res       Date:  2010-04       Impact factor: 2.841

3.  Serum microRNAs are early indicators of survival after radiation-induced hematopoietic injury.

Authors:  Sanket S Acharya; Wojciech Fendler; Jacqueline Watson; Abigail Hamilton; Yunfeng Pan; Emily Gaudiano; Patryk Moskwa; Payel Bhanja; Subhrajit Saha; Chandan Guha; Kalindi Parmar; Dipanjan Chowdhury
Journal:  Sci Transl Med       Date:  2015-05-13       Impact factor: 17.956

Review 4.  First global consensus for evidence-based management of the hematopoietic syndrome resulting from exposure to ionizing radiation.

Authors:  Nicholas Dainiak; Robert Nicolas Gent; Zhanat Carr; Rita Schneider; Judith Bader; Elena Buglova; Nelson Chao; C Norman Coleman; Arnold Ganser; Claude Gorin; Martin Hauer-Jensen; L Andrew Huff; Patricia Lillis-Hearne; Kazuhiko Maekawa; Jeffrey Nemhauser; Ray Powles; Holger Schünemann; Alla Shapiro; Leif Stenke; Nelson Valverde; David Weinstock; Douglas White; Joseph Albanese; Viktor Meineke
Journal:  Disaster Med Public Health Prep       Date:  2011-10-10       Impact factor: 1.385

Review 5.  Pharmacological management of ionizing radiation injuries: current and prospective agents and targeted organ systems.

Authors:  Vijay K Singh; Thomas M Seed
Journal:  Expert Opin Pharmacother       Date:  2020-01-11       Impact factor: 3.889

6.  Physically-based biodosimetry using in vivo EPR of teeth in patients undergoing total body irradiation.

Authors:  Benjamin B Williams; Ruhong Dong; Roberto J Nicolalde; Thomas P Matthews; David J Gladstone; Eugene Demidenko; Bassem I Zaki; Ildar K Salikhov; Piotr N Lesniewski; Harold M Swartz
Journal:  Int J Radiat Biol       Date:  2011-06-23       Impact factor: 2.694

7.  Evolutionarily conserved serum microRNAs predict radiation-induced fatality in nonhuman primates.

Authors:  Wojciech Fendler; Beata Malachowska; Khyati Meghani; Panagiotis A Konstantinopoulos; Chandan Guha; Vijay K Singh; Dipanjan Chowdhury
Journal:  Sci Transl Med       Date:  2017-03-01       Impact factor: 17.956

8.  The use of gamma-H2AX as a biodosimeter for total-body radiation exposure in non-human primates.

Authors:  Christophe E Redon; Asako J Nakamura; Ksenia Gouliaeva; Arifur Rahman; William F Blakely; William M Bonner
Journal:  PLoS One       Date:  2010-11-23       Impact factor: 3.240

9.  A critical assessment of biodosimetry methods for large-scale incidents.

Authors:  Harold M Swartz; Ann Barry Flood; Robert M Gougelet; Michael E Rea; Roberto J Nicolalde; Benjamin B Williams
Journal:  Health Phys       Date:  2010-02       Impact factor: 1.316

10.  Assessment of biodosimetry methods for a mass-casualty radiological incident: medical response and management considerations.

Authors:  Julie M Sullivan; Pataje G S Prasanna; Marcy B Grace; Lynne K Wathen; Rodney L Wallace; John F Koerner; C Norman Coleman
Journal:  Health Phys       Date:  2013-12       Impact factor: 1.316

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