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首页> 外文期刊>Nuclear Science, IEEE Transactions on >A Tracking Compton-Scattering Imaging System for Hadron Therapy Monitoring
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A Tracking Compton-Scattering Imaging System for Hadron Therapy Monitoring

机译:用于强子治疗监测的跟踪康普顿散射成像系统

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摘要

Hadron therapy for, e.g., cancer treatment requires an accurate dose deposition (total amount and location). As a consequence, monitoring is crucial for the success of the treatment. Currently employed PET imaging systems are not able to provide information about the deposed dose fast enough to allow stopping the therapy in case of a discordance with the treatment plan. We are currently investigating an imaging system based on a combined Compton scattering and pair creation camera capable of imaging gamma rays up to 50 MeV. The camera would be able to measure the complete spectrum of emitted gamma rays during the therapy session. We have performed Monte Carlo simulations for three different proton beam energies in a typical hadron therapy scenario. They show that the location of the gamma-ray distribution decay and the falloff region of the deposed dose are related. The reconstructed images prove that the proposed system could provide the required imaging and dose location capabilities.
机译:用于例如癌症治疗的强子疗法需要精确的剂量沉积(总量和位置)。结果,监测对于治疗的成功至关重要。当前使用的PET成像系统不能足够快地提供关于处置剂量的信息,以使得在与治疗计划不一致的情况下可以停止治疗。我们目前正在研究一种基于康普顿散射和成对组合相机的成像系统,该相机能够成像高达50 MeV的伽马射线。相机将能够在治疗期间测量发射的伽马射线的完整光谱。在典型的强子治疗方案中,我们对三种不同的质子束能量进行了蒙特卡洛模拟。他们表明,伽马射线分布衰减的位置与沉积剂量的衰减区域有关。重建的图像证明所提出的系统可以提供所需的成像和剂量定位能力。

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