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Acoustic Bragg Peak Localization in Proton Therapy Treatment: Simulation Studies

机译:质子疗法治疗中的声学布拉格峰值定位:仿真研究

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A full chain simulation of the acoustic hadron therapy monitoring for brain tumors is presented in this work. For the study, a proton beam of 100 MeV was considered. In the first stage, Geant4 was used to simulate the energy deposition and to study the behavior of the Bragg peak. The energy deposition in the medium produced local heating that can be considered instantaneous with respect to the hydrodynamic time scale producing a sound pressure wave. The resulting thermoacoustic signal was subsequently obtained by solving the thermoacoustic equation. The acoustic propagation was simulated by the Finite Element Method (FEM) in the brain and the skull, where a set of piezoelectric sensors were placed. Lastly, the final received signals in the sensors were processed in order to reconstruct the position of the thermal source and, thus, to determine the feasibility and accuracy of acoustic beam monitoring in hadron therapy.
机译:在这项工作中介绍了脑肿瘤的声学强子治疗监测的全链模拟。对于该研究,考虑了100meV的质子束。在第一阶段,Geant4用于模拟能量沉积并研究布拉格峰的行为。介质中的能量沉积产生了局部加热,该局部加热可以被视为产生声压波的流体动力时间尺度的瞬时。随后通过求解热声学方程来获得所得到的热声信号。通过大脑中的有限元方法(FEM)和颅骨模拟声学传播,其中放置了一组压电传感器。最后,处理传感器中的最终接收信号,以重建热源的位置,从而确定,以确定声束治疗中声波监测的可行性和准确性。

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