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Monte Carlo modelling of a silicon strip detector for microbeam radiation therapy (Conference Paper)

机译:用于微束放射治疗的硅条检测器的蒙特卡洛建模(会议论文)

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Microbeam radiation therapy is an experimental technique utilising synchrotron X-rays collimated into a planar array of microbeams. Due to the complex structure of the radiation field and high dose rate, this introduces dosimetric challenges. Current dosimetric methods are inadequate in that they lack either real-time readout, or high spatial resolution. A detector system, consisting of the Silicon Multi-Strip Detector and associated readout system was developed at the University of Wollongong. This system performs online, real-time dosimetry, and is designed for placement upstream of the patient as a transmission detector. The interaction of synchrotron radiation with this detector, both in terms of perturbative effects on the beam and interactions within the detector are investigated with the Monte Carlo simulation toolkit, Geant4. The interaction percentage of the detector with the traversing beam was determined as being (1.97 ± 0.01) %. Energy deposition was found to be uniform across the depth of the detector, negating the most proximal and distal 5-μm region, a phenomenon that may be attributed to a lack of charged particle equilibrium. The effect that the detector has on a traversing beam's macroscopic dose deposition was determined as being a mean reduction in dose of (1.44 ± 0.15) % for depths in water between 5 and 35 mm.
机译:微束放射疗法是一种利用同步加速器X射线准直成平面微束阵列的实验技术。由于辐射场的复杂结构和高剂量率,这带来了剂量学挑战。当前的剂量学方法不足之处在于它们缺乏实时读数或高空间分辨率。卧龙岗大学开发了一种由硅多条检测器和相关的读出系统组成的检测器系统。该系统执行在线实时剂量测定,并设计为放置在患者上游作为透射检测器。使用蒙特卡罗模拟工具包Geant4,研究了同步辐射与该探测器之间的相互作用,包括对光束的微扰效应和探测器内部的相互作用。探测器与横梁的相互作用百分比确定为(1.97±0.01)%。发现在整个探测器深度上能量沉积是均匀的,从而消除了最近端和最远端的5μm区域,这种现象可能归因于缺乏带电粒子平衡。确定检测器对横梁的宏观剂量沉积的影响是在5至35 mm的水中深度时平均剂量降低(1.44±0.15)%。

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