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Fundamental limits to stereotactic proton therapy

机译:对立体定向质子疗法的根本限制

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Proton therapy treatment techniques continue their steady development from passive scattering to 3-D multi-field scanning modalities. As the demands for faster and more accurate treatment increase, the requirements and tolerances on beam delivery technologies become more stringent. Fundamental physical limits (energy straggling and multiple Coulomb scattering) ultimately limit treatment performance parameters, even for an ideal accelerator and nozzle system. This paper calculates how few independent beam delivery control points are needed in a tumor in order to perform the sharpest possible stereotactic surgery, with 1% integrated dose flatness.
机译:质子疗法处理技术从被动散射到3-D多场扫描方式的稳定发展。随着对更快和更准确的治疗的需求增加,光束输送技术的要求和公差变得更加严格。基本物理限制(能量贸易和多个库仑散射)最终限制了处理性能参数,即使是理想的加速器和喷嘴系统。本文计算肿瘤中需要几个独立的光束输送控制点,以便进行最锋利的可能的立体定向手术,其中1%的综合剂量平整度。

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