Literature DB >> 22850230

Electron paramagnetic resonance dosimetry for a large-scale radiation incident.

Harold M Swartz1, Ann Barry Flood, Benjamin B Williams, Ruhong Dong, Steven G Swarts, Xiaoming He, Oleg Grinberg, Jason Sidabras, Eugene Demidenko, Jiang Gui, David J Gladstone, Lesley A Jarvis, Maciej M Kmiec, Kyo Kobayashi, Piotr N Lesniewski, Stephen D P Marsh, Thomas P Matthews, Roberto J Nicolalde, Patrick M Pennington, Timothy Raynolds, Ildar Salikhov, Dean E Wilcox, Bassem I Zaki.   

Abstract

With possibilities for radiation terrorism and intensified concerns about nuclear accidents since the recent Fukushima Daiichi event, the potential exposure of large numbers of individuals to radiation that could lead to acute clinical effects has become a major concern. For the medical community to cope with such an event and avoid overwhelming the medical care system, it is essential to identify not only individuals who have received clinically significant exposures and need medical intervention but also those who do not need treatment. The ability of electron paramagnetic resonance to measure radiation-induced paramagnetic species, which persist in certain tissues (e.g., teeth, fingernails, toenails, bone, and hair), has led to this technique becoming a prominent method for screening significantly exposed individuals. Although the technical requirements needed to develop this method for effective application in a radiation event are daunting, remarkable progress has been made. In collaboration with General Electric and through funding committed by the Biomedical Advanced Research and Development Authority, electron paramagnetic resonance tooth dosimetry of the upper incisors is being developed to become a Food and Drug Administration-approved and manufacturable device designed to carry out triage for a threshold dose of 2 Gy. Significant progress has also been made in the development of electron paramagnetic resonance nail dosimetry based on measurements of nails in situ under point-of-care conditions, and in the near future this may become a second field-ready technique. Based on recent progress in measurements of nail clippings, it is anticipated that this technique may be implementable at remotely located laboratories to provide additional information when the measurements of dose on-site need to be supplemented. The authors conclude that electron paramagnetic resonance dosimetry is likely to be a useful part of triage for a large-scale radiation incident.

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Year:  2012        PMID: 22850230      PMCID: PMC3649772          DOI: 10.1097/HP.0b013e3182588d92

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


  35 in total

1.  Advances towards using finger/toenail dosimetry to triage a large population after potential exposure to ionizing radiation.

Authors:  Xiaoming He; Jiang Gui; Thomas P Matthews; Benjamin B Williams; Steven G Swarts; Oleg Grinberg; Jason Sidabras; Dean E Wilcox; Harold M Swartz
Journal:  Radiat Meas       Date:  2011-09       Impact factor: 1.898

Review 2.  EPR dosimetry with tooth enamel: A review.

Authors:  Paola Fattibene; Freddy Callens
Journal:  Appl Radiat Isot       Date:  2010-06-04       Impact factor: 1.513

3.  Estimating radiation dose from time to emesis and lymphocyte depletion.

Authors:  Denise D Parker; Jack C Parker
Journal:  Health Phys       Date:  2007-12       Impact factor: 1.316

4.  Fingernail dosimetry: current status and perspectives.

Authors:  Alex Romanyukha; Ricardo A Reyes; Francois Trompier; Luis A Benevides
Journal:  Health Phys       Date:  2010-02       Impact factor: 1.316

5.  Rapid radiation dose assessment for radiological public health emergencies: roles of NIAID and BARDA.

Authors:  Marcy B Grace; Brian R Moyer; Joanna Prasher; Kenneth D Cliffer; Narayani Ramakrishnan; Joseph Kaminski; C Norman Coleman; Ronald G Manning; Bert W Maidment; Richard Hatchett
Journal:  Health Phys       Date:  2010-02       Impact factor: 1.316

6.  Electron paramagnetic resonance in irradiated fingernails: variability of dose dependence and possibilities of initial dose assessment.

Authors:  R A Reyes; Alexander Romanyukha; C Olsen; F Trompier; L A Benevides
Journal:  Radiat Environ Biophys       Date:  2009-06-12       Impact factor: 1.925

7.  In vivo dosimetry by electron spin resonance spectroscopy.

Authors:  J M Brady; N O Aarestad; H M Swartz
Journal:  Health Phys       Date:  1968-07       Impact factor: 1.316

Review 8.  Radiation metabolomics and its potential in biodosimetry.

Authors:  Stephen L Coy; Amrita K Cheema; John B Tyburski; Evagelia C Laiakis; Sean P Collins; Albert Fornace
Journal:  Int J Radiat Biol       Date:  2011-06-22       Impact factor: 2.694

9.  Dosimetry based on EPR spectral analysis of fingernail clippings.

Authors:  Dean E Wilcox; Xiaoming He; Jiang Gui; Andres E Ruuge; Hongbin Li; Benjamin B Williams; Harold M Swartz
Journal:  Health Phys       Date:  2010-02       Impact factor: 1.316

10.  UV effects in tooth enamel and their possible application in EPR dosimetry with front teeth.

Authors:  S Sholom; M Desrosiers; V Chumak; N Luckyanov; S L Simon; A Bouville
Journal:  Health Phys       Date:  2010-02       Impact factor: 1.316

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  22 in total

1.  Evaluating the Special Needs of The Military for Radiation Biodosimetry for Tactical Warfare Against Deployed Troops: Comparing Military to Civilian Needs for Biodosimetry Methods.

Authors:  Ann Barry Flood; Arif N Ali; Holly K Boyle; Gaixin Du; Victoria A Satinsky; Steven G Swarts; Benjamin B Williams; Eugene Demidenko; Wilson Schreiber; Harold M Swartz
Journal:  Health Phys       Date:  2016-08       Impact factor: 1.316

2.  A microwave resonator for limiting depth sensitivity for electron paramagnetic resonance spectroscopy of surfaces.

Authors:  Jason W Sidabras; Shiv K Varanasi; Richard R Mett; Steven G Swarts; Harold M Swartz; James S Hyde
Journal:  Rev Sci Instrum       Date:  2014-10       Impact factor: 1.523

3.  Are We Ready for a Radiological Terrorist Attack Yet? Report From the Centers for Medical Countermeasures Against Radiation Network.

Authors:  David J Brenner; Nelson J Chao; Joel S Greenberger; Chandan Guha; William H McBride; Harold M Swartz; Jacqueline P Williams
Journal:  Int J Radiat Oncol Biol Phys       Date:  2015-07-01       Impact factor: 7.038

4.  The Application and Distribution of Magnetic Field Modulation in the Detection Apertures of X-band EPR Cavities for In Vivo Tooth Dosimetry.

Authors:  Junwang Guo; Jierui Zou; Guofu Dong; Lei Ma; Jianbo Cong; Kai Fan; Guoshan Yang; Ke Wu
Journal:  Radiat Prot Dosimetry       Date:  2016-07-29       Impact factor: 0.972

5.  IN-VIVO RADIATION DOSIMETRY USING PORTABLE L BAND EPR: ON-SITE MEASUREMENT OF VOLUNTEERS IN FUKUSHIMA PREFECTURE, JAPAN.

Authors:  Minoru Miyake; Yasuhiro Nakai; Ichiro Yamaguchi; Hiroshi Hirata; Naoki Kunugita; Benjamin B Williams; Harold M Swartz
Journal:  Radiat Prot Dosimetry       Date:  2016-08-13       Impact factor: 0.972

6.  Development of a novel mouth model as an alternative tool to test the effectiveness of an in vivo EPR dosimetry system.

Authors:  Kyo Kobayashi; Ruhong Dong; Roberto Javier Nicolalde; Paul Calderon; Gaixin Du; Benjamin B Williams; Masaichi-Chang-Il Lee; Harold M Swartz; Ann Barry Flood
Journal:  Phys Med Biol       Date:  2018-08-10       Impact factor: 3.609

Review 7.  Clinical EPR: unique opportunities and some challenges.

Authors:  Harold M Swartz; Benjamin B Williams; Bassem I Zaki; Alan C Hartford; Lesley A Jarvis; Eunice Y Chen; Richard J Comi; Marc S Ernstoff; Huagang Hou; Nadeem Khan; Steven G Swarts; Ann B Flood; Periannan Kuppusamy
Journal:  Acad Radiol       Date:  2014-02       Impact factor: 3.173

8.  Imaging tooth enamel using zero echo time (ZTE) magnetic resonance imaging.

Authors:  Kevin M Rychert; Gang Zhu; Maciej M Kmiec; Venkata K Nemani; Benjamin B Williams; Ann Barry Flood; Harold M Swartz; Barjor Gimi
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2015-03-19

9.  POSSIBLE NATURE OF THE RADIATION-INDUCED SIGNAL IN NAILS: HIGH-FIELD EPR, CONFIRMING CHEMICAL SYNTHESIS, AND QUANTUM CHEMICAL CALCULATIONS.

Authors:  Dmitriy S Tipikin; Steven G Swarts; Jason W Sidabras; François Trompier; Harold M Swartz
Journal:  Radiat Prot Dosimetry       Date:  2016-08-13       Impact factor: 0.972

10.  Development and validation of an ex vivo electron paramagnetic resonance fingernail biodosimetric method.

Authors:  Xiaoming He; Steven G Swarts; Eugene Demidenko; Ann B Flood; Oleg Grinberg; Jiang Gui; Michael Mariani; Stephen D Marsh; Andres E Ruuge; Jason W Sidabras; Dmitry Tipikin; Dean E Wilcox; Harold M Swartz
Journal:  Radiat Prot Dosimetry       Date:  2014-05-06       Impact factor: 0.972

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