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Reducing stray radiation dose to patients receiving passively scattered proton radiotherapy for prostate cancer

机译:降低接受被动分散质子放射治疗前列腺癌患者的杂散辐射剂量

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Proton beam radiotherapy exposes healthy tissue to stray radiation emanating from the treatment unit and secondary radiation produced within the patient. These exposures provide no known benefit and may increase a patient's risk of developing a radiogenic second cancer. The aim of this study was to explore strategies to reduce stray radiation dose to a patient receiving a 76 Gy proton beam treatment for cancer of the prostate. The whole-body effective dose from stray radiation, E, was estimated using detailed Monte Carlo simulations of a passively scattered proton treatment unit and an anthropomorphic phantom. The predicted value of E was 567 mSv, of which 320 mSv was attributed to leakage from the treatment unit; the remainder arose from scattered radiation that originated within the patient. Modest modifications of the treatment unit reduced E by 212 mSv. Surprisingly, E from a modified passive-scattering device was only slightly higher ( 109 mSv) than from a nozzle with no leakage, e. g., that which may be approached with a spot-scanning technique. These results add to the body of evidence supporting the suitability of passively scattered proton beams for the treatment of prostate cancer, confirm that the effective dose from stray radiation was not excessive, and, importantly, show that it can be substantially reduced by modest enhancements to the treatment unit.
机译:质子束放射疗法将健康组织暴露于治疗单元发出的杂散辐射以及患者体内产生的二次辐射。这些暴露没有提供已知的益处,并且可能增加患者发生放射源性第二癌症的风险。这项研究的目的是探索减少对接受76 Gy质子束治疗的前列腺癌患者的杂散辐射剂量的策略。使用无源分散的质子处理单元和拟人体模的详细蒙特卡洛模拟,估算了来自杂散辐射的全身有效剂量E。 E的预测值为567 mSv,其中320 mSv归因于处理单元的泄漏;其余的起因于患者体内产生的散射辐射。处理单元的适度修改使E降低了212 mSv。出人意料的是,改进的无源散射装置产生的E仅比没有泄漏的喷嘴产生的E(109 mSv)略高。例如,可以通过点扫描技术来解决。这些结果增加了支持被动散射质子束适合治疗前列腺癌的证据,证实了杂散辐射的有效剂量并不过分,而且重要的是,通过适度增强放射强度可以大大降低该剂量。治疗单位。

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