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Microdosimetric evaluation of the 400 MeVucleon carbon beam at HIMAC.

机译:在HIMAC上对400 MeV /核子碳束的微剂量测定。

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摘要

Microdosimetric single event spectra were determined as a function of depth in an acrylic phantom for the carbon beam at HIMAC using a tissue equivalent proportional counter (TEPC) coupled to a scintillation counter system. The fragments produced by the carbon beam were identified by the deltaE-time of flight distribution obtained from two scintillation counters which were positioned at the up- and down-stream of the TEPC. Lineal energy distribution for the carbon beam and its five fragments, namely, proton, helium, lithium, beryllium, and boron ions, were measured in the lineal-energy range of 5-1000 keV/microm at five phantom depths between 0 and 230 mm. The dose distribution for the carbon beam and its fragments were obtained separately. The relative biological effectiveness (RBE) of the carbon beam in the phantom was calculated using a response function. The maximum RBE for the carbon beam was found to be about 5 near the Bragg peak. It was observed to rapidly decrease for Bragg peaks occurring at deeper positions in the phantom. The dose from the beam fragments accounted for about 30% to the total dose, however, its contribution to the RBE was less than 17%.
机译:使用耦合到闪烁计数器系统的组织当量比例计数器(TEPC),在HIMAC上确定碳剂量束的丙烯酸剂量模型的微剂量单事件光谱作为深度的函数。碳束产生的碎片通过从位于TEPC上游和下游的两个闪烁计数器获得的deltaE飞行时间分布来识别。碳束及其五个片段(质子,氦,锂,铍和硼离子)的线性能量分布是在5-1000 keV / microm的线性能量范围内,在0至230 mm的五个幻像深度处测量的。分别获得碳束及其碎片的剂量分布。使用响应函数计算了幻影中碳束的相对生物有效性(RBE)。发现碳束的最大RBE在布拉格峰附近约为5。观察到幻影中较深位置出现的布拉格峰迅速降低。光束碎片的剂量约占总剂量的30%,但其对RBE的贡献小于17%。

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