Literature DB >> 24276553

The MCART radiation physics core: the quest for radiation dosimetry standardization.

Abdul M Kazi1, Thomas J MacVittie, Giovanni Lasio, Wei Lu, Karl L Prado.   

Abstract

Dose-related radiobiological research results can only be compared meaningfully when radiation dosimetry is standardized. To this purpose, the National Institute of Allergy and Infectious Diseases (NIAID)-sponsored Medical Countermeasures Against Radiological Threats (MCART) consortium recently created a Radiation Physics Core (RPC) as an entity to assume responsibility of standardizing radiation dosimetry practices among its member laboratories. The animal research activities in these laboratories use a variety of ionizing photon beams from several irradiators such as 250-320 kVp x-ray generators, Cs irradiators, Co teletherapy machines, and medical linear accelerators (LINACs). In addition to this variety of sources, these centers use a range of irradiation techniques and make use of different dose calculation schemes to conduct their experiments. An extremely important objective in these research activities is to obtain a Dose Response Relationship (DRR) appropriate to their respective organ-specific models of acute and delayed radiation effects. A clear and unambiguous definition of the DRR is essential for the development of medical countermeasures. It is imperative that these DRRs are transparent between centers. The MCART RPC has initiated the establishment of standard dosimetry practices among member centers and is introducing a Remote Dosimetry Monitoring Service (RDMS) to ascertain ongoing quality assurance. This paper will describe the initial activities of the MCART RPC toward implementing these standardization goals. It is appropriate to report a summary of initial activities with the intent of reporting the full implementation at a later date.

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Year:  2014        PMID: 24276553      PMCID: PMC3899940          DOI: 10.1097/HP.0b013e3182a2a987

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


  11 in total

1.  AAPM's TG-51 protocol for clinical reference dosimetry of high-energy photon and electron beams.

Authors:  P R Almond; P J Biggs; B M Coursey; W F Hanson; M S Huq; R Nath; D W Rogers
Journal:  Med Phys       Date:  1999-09       Impact factor: 4.071

2.  AAPM protocol for 40-300 kV x-ray beam dosimetry in radiotherapy and radiobiology.

Authors:  C M Ma; C W Coffey; L A DeWerd; C Liu; R Nath; S M Seltzer; J P Seuntjens
Journal:  Med Phys       Date:  2001-06       Impact factor: 4.071

3.  A preclinical rodent model of radiation-induced lung injury for medical countermeasure screening in accordance with the FDA animal rule.

Authors:  Isabel L Jackson; Puting Xu; Caroline Hadley; Barry P Katz; Ross McGurk; Julian D Down; Zeljko Vujaskovic
Journal:  Health Phys       Date:  2012-10       Impact factor: 1.316

4.  The MCART Consortium animal models series.

Authors:  Thomas J MacVittie
Journal:  Health Phys       Date:  2012-10       Impact factor: 1.316

5.  Comprehensive QA for radiation oncology: report of AAPM Radiation Therapy Committee Task Group 40.

Authors:  G J Kutcher; L Coia; M Gillin; W F Hanson; S Leibel; R J Morton; J R Palta; J A Purdy; L E Reinstein; G K Svensson
Journal:  Med Phys       Date:  1994-04       Impact factor: 4.071

6.  Acute gastrointestinal syndrome in high-dose irradiated mice.

Authors:  Catherine Booth; Gregory Tudor; Julie Tudor; Barry P Katz; Thomas J MacVittie
Journal:  Health Phys       Date:  2012-10       Impact factor: 1.316

7.  Evidence of delayed gastrointestinal syndrome in high-dose irradiated mice.

Authors:  Catherine Booth; Gregory Tudor; Nicola Tonge; Terez Shea-Donohue; Thomas J MacVittie
Journal:  Health Phys       Date:  2012-10       Impact factor: 1.316

8.  Establishing a murine model of the hematopoietic syndrome of the acute radiation syndrome.

Authors:  P Artur Plett; Carol H Sampson; Hui Lin Chua; Mandar Joshi; Catherine Booth; Alec Gough; Cynthia S Johnson; Barry P Katz; Ann M Farese; Jeffrey Parker; Thomas J MacVittie; Christie M Orschell
Journal:  Health Phys       Date:  2012-10       Impact factor: 1.316

9.  The acute gastrointestinal subsyndrome of the acute radiation syndrome: a rhesus macaque model.

Authors:  Thomas J MacVittie; Ann M Farese; Alexander Bennett; Daniel Gelfond; Terez Shea-Donohue; Gregory Tudor; Catherine Booth; Emylee McFarland; William Jackson
Journal:  Health Phys       Date:  2012-10       Impact factor: 1.316

10.  The prolonged gastrointestinal syndrome in rhesus macaques: the relationship between gastrointestinal, hematopoietic, and delayed multi-organ sequelae following acute, potentially lethal, partial-body irradiation.

Authors:  Thomas J MacVittie; Alexander Bennett; Catherine Booth; Michael Garofalo; Gregory Tudor; Amanda Ward; Terez Shea-Donohue; Daniel Gelfond; Emylee McFarland; William Jackson; Wei Lu; Ann M Farese
Journal:  Health Phys       Date:  2012-10       Impact factor: 1.316

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  9 in total

1.  Scattered Dose Calculations and Measurements in a Life-Like Mouse Phantom.

Authors:  David Welch; Leah Turner; Michael Speiser; Gerhard Randers-Pehrson; David J Brenner
Journal:  Radiat Res       Date:  2017-01-31       Impact factor: 2.841

2.  Dosimetry Formalism and Implementation of a Homogenous Irradiation Protocol to Improve the Accuracy of Small Animal Whole-Body Irradiation Using a 137Cs Irradiator.

Authors:  N Patrik Brodin; Yong Chen; Ravindra Yaparpalvi; Chandan Guha; Wolfgang A Tomé
Journal:  Health Phys       Date:  2016-02       Impact factor: 1.316

3.  Mean Organ Doses Resulting From Non-Human Primate Whole Thorax Lung Irradiation Prescribed to Mid-Line Tissue.

Authors:  Charlotte Prado; Abdul Kazi; Alexander Bennett; Thomas MacVittie; Karl Prado
Journal:  Health Phys       Date:  2015-11       Impact factor: 1.316

4.  An interlaboratory comparison of dosimetry for a multi-institutional radiobiological research project: Observations, problems, solutions and lessons learned.

Authors:  Thomas M Seed; Shiyun Xiao; Nancy Manley; Janko Nikolich-Zugich; Jason Pugh; Marcel Van den Brink; Yoko Hirabayashi; Koji Yasutomo; Atsushi Iwama; Shigeo Koyasu; Ivo Shterev; Gregory Sempowski; Francesca Macchiarini; Kei Nakachi; Keith C Kunugi; Clifford G Hammer; Lawrence A Dewerd
Journal:  Int J Radiat Biol       Date:  2015-11-17       Impact factor: 2.694

5.  Study logistics that can impact medical countermeasure efficacy testing in mouse models of radiation injury.

Authors:  Andrea L DiCarlo; Zulmarie Perez Horta; Carmen I Rios; Merriline M Satyamitra; Lanyn P Taliaferro; David R Cassatt
Journal:  Int J Radiat Biol       Date:  2020-09-24       Impact factor: 2.694

6.  A Systematic Review of the Hematopoietic Acute Radiation Syndrome (H-ARS) in Canines and Non-human Primates: Acute Mixed Neutron/Gamma vs. Reference Quality Radiations.

Authors:  Thomas J MacVittie; Ann M Farese; William E Jackson
Journal:  Health Phys       Date:  2020-11       Impact factor: 2.922

7.  A Model for Precise and Uniform Pelvic- and Limb-Sparing Abdominal Irradiation to Study the Radiation-Induced Gastrointestinal Syndrome in Mice Using Small Animal Irradiation Systems.

Authors:  N Patrik Brodin; Anna Velcich; Chandan Guha; Wolfgang A Tomé
Journal:  Dose Response       Date:  2017-01-04       Impact factor: 2.658

8.  Lipidomic dysregulation within the lung parenchyma following whole-thorax lung irradiation: Markers of injury, inflammation and fibrosis detected by MALDI-MSI.

Authors:  Claire L Carter; Jace W Jones; Ann M Farese; Thomas J MacVittie; Maureen A Kane
Journal:  Sci Rep       Date:  2017-09-04       Impact factor: 4.379

Review 9.  Acute Radiation-induced Lung Injury in the Non-human Primate: A Review and Comparison of Mortality and Co-morbidities Using Models of Partial-body Irradiation with Marginal Bone Marrow Sparing and Whole Thorax Lung Irradiation.

Authors:  Thomas J MacVittie; Ann M Farese; George A Parker; Alexander W Bennett; William E Jackson
Journal:  Health Phys       Date:  2020-11       Impact factor: 2.922

  9 in total

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