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球形组织等效正比计数器对能量为200 - 1000兆电子伏/核子的铁粒子的响应。

The response of a spherical tissue-equivalent proportional counter to iron particles from 200-1000 MeV/nucleon.

作者信息

Gersey B B, Borak T B, Guetersloh S B, Zeitlin C, Miller J, Heilbronn L, Murakami T, Iwata Y

机构信息

Department of Radiological Health Sciences, Colorado State University, Fort Collins, Colorado 80523, USA.

出版信息

Radiat Res. 2002 Mar;157(3):350-60. doi: 10.1667/0033-7587(2002)157[0350:troast]2.0.co;2.

Abstract

The radiation environment on board the space shuttle and the International Space Station includes high-Z and high-energy (HZE) particles that are part of the galactic cosmic radiation (GCR) spectrum. Iron-56 particles are considered to be one of the most biologically important parts of the GCR spectrum. Tissue-equivalent proportional counters (TEPCs) are used as active dosimeters on manned space flights. These TEPCs are further used to determine the average quality factor for each space mission. A TEPC simulating a 1-microm-diameter sphere of tissue was exposed as part of a particle spectrometer to (56)Fe particles at energies from 200-1000 MeV/nucleon. The response of TEPCs in terms of mean lineal energy, y(F), and dose mean lineal energy, y(D), as well as the energy deposited at different impact parameters through the detector was determined for six different incident energies of (56)Fe particles in this energy range. Calculations determined that charged-particle equilibrium was achieved for each of the six experiments. Energy depositions at different impact parameters were calculated using a radial dose distribution model, and the results were compared to experimental data.

摘要

航天飞机和国际空间站上的辐射环境包括作为银河宇宙辐射(GCR)光谱一部分的高原子序数和高能(HZE)粒子。铁 - 56粒子被认为是GCR光谱中生物学上最重要的部分之一。组织等效正比计数器(TEPC)在载人航天飞行中用作有源剂量计。这些TEPC进一步用于确定每个太空任务的平均品质因数。作为粒子光谱仪的一部分,一个模拟直径为1微米的组织球体的TEPC在能量为200 - 1000 MeV/核子的情况下暴露于铁 - 56粒子。针对该能量范围内铁 - 56粒子的六种不同入射能量,确定了TEPC在平均线能量y(F)和剂量平均线能量y(D)方面的响应,以及通过探测器在不同碰撞参数下沉积的能量。计算确定这六个实验中的每一个都实现了带电粒子平衡。使用径向剂量分布模型计算不同碰撞参数下的能量沉积,并将结果与实验数据进行比较。

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