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Stochastic Threshold Exponential (TE) Model for Hematopoietic Tissue Reconstitution Deficit after Radiation Damage

机译:辐射损伤后造血组织重建缺陷的随机阈值指数(TE)模型

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摘要

Whole-body exposure to large radiation doses can cause severe loss of hematopoietic tissue cells and threaten life if the lost cells are not replaced in a timely manner through natural repopulation (a homeostatic mechanism). Repopulation to the baseline level N0 is called reconstitution and a reconstitution deficit (repopulation shortfall) can occur in a dose-related and organ-specific manner. previously introduced a deterministic version of a threshold exponential (TE) model of tissue-reconstitution deficit at a given follow-up time that was applied to bone marrow and spleen cellularity (number of constituent cells) data obtained 6 weeks after whole-body gamma-ray exposure of female C.B-17 mice. In this paper a more realistic, stochastic version of the TE model is provided that allows radiation response to vary between different individuals. The Stochastic TE model is applied to post gamma-ray-exposure cellularity data previously reported and also to more limited X-ray cellularity data for whole-body irradiated female C.B-17 mice. Results indicate that the population average threshold for a tissue reconstitution deficit appears to be similar for bone marrow and spleen and for 320-kV-spectrum X-rays and Cs-137 gamma rays. This means that 320-kV spectrum X-rays could successfully be used in conducting such studies.
机译:全身暴露于大剂量辐射下会导致造血组织细胞严重流失,并威胁生命,如果流失的细胞没有通过自然补充而及时地被替换(体内平衡机制)。重新填充到基线水平N0称为重新构建,并且重新构建缺陷(重新填充不足)可能以剂量相关和器官特定的方式发生。先前介绍了在给定的随访时间组织重建缺陷阈值指数(TE)模型的确定性版本,该模型适用于全身伽马射线照射6周后获得的骨髓和脾细胞数量(组成细胞数)数据CB-17雌性小鼠的射线照射。在本文中,提供了一种更现实,更随机的TE模型,该模型允许辐射响应在不同个体之间变化。随机TE模型适用于先前报道的后期伽马射线细胞数据,也适用于全身照射的雌性C.B-17小鼠的有限X射线细胞数据。结果表明,对于骨髓和脾脏以及320 kV频谱的X射线和Cs-137γ射线,组织重建缺陷的人群平均阈值似乎相似。这意味着320 kV频谱X射线可以成功地用于进行此类研究。

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