Evaluating bone marrow dosimetry with the addition of bone marrow structures to the medical internal radiation dose phantom

Author:

Ferrone Kristine L.123,Willis Charles E.12,Guan Fada14,Ma Jingfei12,Peterson Leif E.5,Kry Stephen F.12

Affiliation:

1. The University of Texas M.D. Anderson Cancer Center Houston Texas USA

2. The University of Texas M.D. Anderson Cancer Center UT Health Graduate School of Biomedical Sciences Houston Texas USA

3. The Aerospace Corporation Houston Texas USA

4. Department of Therapeutic Radiology Yale University School of Medicine New Haven Connecticut USA

5. Department of Statistics Rice University Houston Texas USA

Abstract

AbstractBackgroundReliable estimates of radiation dose to bone marrow are critical to understanding the risk of radiation‐induced cancers. Although the medical internal radiation dose phantom is routinely used for dose estimation, bone marrow is not defined in the phantom. Consequently, methods of indirectly estimating bone marrow dose have been implemented based on dose to surrogate volumes or average dose to soft tissue.MethodsIn this study, new bone marrow structures were implemented and evaluated to the medical internal radiation dose phantom in Geant4, offering improved fidelity. The dose equivalent to the bone marrow was calculated across medical, occupational, and space radiation exposure scenarios, and compared with results using prior indirect estimation methods.ConclusionOur results show that bone marrow dose may be overestimated by up to a factor of three when using the traditional methods when compared with the improved fidelity medical internal radiation dose method, specifically at clinical x‐ray energies.

Publisher

Wiley

Subject

Oncology

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