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Accepted for/Published in: JMIRx Med

Date Submitted: Oct 26, 2024
Date Accepted: May 18, 2025

The final, peer-reviewed published version of this preprint can be found here:

Monte Carlo Dose Estimation of Absorbed Dose to the Hematopoietic Stem Cell Layer of the Bone Marrow Assuming Nonuniform Distribution Around the Vascular Endothelium of the Bone Marrow: Simulation and Analysis Study

Kobayashi N

Monte Carlo Dose Estimation of Absorbed Dose to the Hematopoietic Stem Cell Layer of the Bone Marrow Assuming Nonuniform Distribution Around the Vascular Endothelium of the Bone Marrow: Simulation and Analysis Study

JMIRx Med 2025;6:e68029

DOI: 10.2196/68029

PMID: 40669086

PMCID: 12286589

Monte Carlo dose estimation of absorbed dose to the hematopoietic stem cell layer of the bone marrow assuming non-uniform distribution around the vascular endothelium of the bone marrow

  • Noriko Kobayashi

ABSTRACT

Background:

Recent studies have shown that hematopoietic stem cells (HSCs) are concentrated around the endothelium of the sinusoidal capillaries. However, the current International Commission on Radiological Protection (ICRP) dosimetry model does not take into account the heterogeneity of the bone marrow tissue and stem cell distribution.

Objective:

The objective of this study is to evaluate of red bone marrow doses assuming that the hematopoietic stem cell layer of the bone marrow is localized in the vascular endothelium.

Methods:

A model of the trabecular bone tissues in cervical vertebrae was created, and the absorbed doses to the stem cell layer in the perivascular HSC layer in the bone marrow from radionuclides inhaled into the body were estimated for the major beta- and alpha-nuclides and noble gases and compared with the absorbed dose based on the ICRP 60 and ICRP 103 recommendations.

Results:

The absorbed doses to the bone marrow obtained from the model calculations were not significantly different from ICRP60 and ICRP103 for beta-nuclides but were much lower than previously estimated for alpha-nuclides, and the contribution of red bone marrow and blood sources was greater than that of trabecular bone for alpha-nuclides. Noble gases in the red bone marrow may also affect the bone marrow stem cell layer.

Conclusions:

The bone marrow dose assessment for alpha nuclides and noble gases should be re-examined using a precise model based on CT images from the perspective of occupational and public radiation protection.


 Citation

Please cite as:

Kobayashi N

Monte Carlo Dose Estimation of Absorbed Dose to the Hematopoietic Stem Cell Layer of the Bone Marrow Assuming Nonuniform Distribution Around the Vascular Endothelium of the Bone Marrow: Simulation and Analysis Study

JMIRx Med 2025;6:e68029

DOI: 10.2196/68029

PMID: 40669086

PMCID: 12286589

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