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中厚依赖性质子剂量学在放射生物学实验中的应用。

Medium-thickness-dependent proton dosimetry for radiobiological experiments.

机构信息

Department of Physics, City University of Hong Kong, Tat Chee Avenue, Kowloon Tong, Hong Kong.

Faculty of Science, University of Kragujevac, Kragujevac, Serbia.

出版信息

Sci Rep. 2019 Aug 9;9(1):11577. doi: 10.1038/s41598-019-48100-9.

Abstract

A calibration method was proposed in the present work to determine the medium-thickness-dependent proton doses absorbed in cellular components (i.e., cellular cytoplasm and nucleus) in radiobiological experiments. Consideration of the dependency on medium thickness was crucial as the linear energy transfer (LET) of protons could rise to a sharp peak (known as the Bragg peak) towards the end of their ranges. Relationships between the calibration coefficient R vs medium-layer thickness were obtained for incident proton energies of 10, 15, 20, 25, 30 and 35 MeV, and for various medium thicknesses up to 5000 μm, where R was defined as the ratio D/D, D was the absorbed proton dose in cellular components, and D was the absorbed proton dose in a separate radiation detector. In the present work, D and D were determined using the MCNPX (Monte Carlo N-Particle eXtended) code version 2.4.0. For lower incident proton energies (i.e., 10, 15 and 20 MeV), formation of Bragg-peak-like features were noticed in their R-vs-medium-layer-thickness relationships, and large R values of >7 and >6 were obtained for cytoplasm and nucleus of cells, respectively, which highlighted the importance of careful consideration of the medium thickness in radiobiological experiments.

摘要

本工作提出了一种校准方法,用于确定放射生物学实验中细胞成分(即细胞质和细胞核)中吸收的与介质厚度相关的中等厚度质子剂量。考虑到介质厚度的依赖性至关重要,因为质子的线性能量转移(LET)在其射程结束时可能会上升到一个尖锐的峰值(称为布拉格峰)。对于入射质子能量为 10、15、20、25、30 和 35 MeV 的情况,以及各种介质厚度高达 5000 μm 的情况,获得了校准系数 R 与介质层厚度之间的关系,其中 R 定义为 D/D 的比值,D 是细胞成分中吸收的质子剂量,D 是单独辐射探测器中吸收的质子剂量。在本工作中,D 和 D 使用 MCNPX(Monte Carlo N-Particle eXtended)代码版本 2.4.0 确定。对于较低的入射质子能量(即 10、15 和 20 MeV),在它们的 R 与介质层厚度关系中注意到了类似于布拉格峰的特征的形成,并且对于细胞质和细胞核,分别获得了大于 7 和大于 6 的大 R 值,这强调了在放射生物学实验中仔细考虑介质厚度的重要性。

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