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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The development of a treatment control system for a passive scattering proton therapy installation
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The development of a treatment control system for a passive scattering proton therapy installation

机译:用于被动散射质子疗法安装的治疗控制系统的开发

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Ocular melanoma has been treated using proton therapy at the Centre Antoine Lacassagne (CAL) since 1991, following the commissioning of the 65 MeV cyclotron MEDICYC and its associated beam-lines a few years earlier. The dedicated eye-line is optimized for shallow tumors and sharp penumbrae and provides state-of-the-art quality of care. The cyclotron, beam-lines and treatment systems, which are maintained exclusively by the staff at CAL, have proven to be exceptionally robust with up-times consistently above 95%. The systems are however aging and need to be replaced to ensure a continuation of ocular treatments with MEDICYC. This paper describes the development and performance of a new treatment control and dose measurement system for MEDICYC. Software and hardware architectural design choices are discussed in context of the requirements for dose delivery precision, robustness and patient safety. The performance of the treatment delivery, dose monitoring and beam quality assurance systems are presented.
机译:自1991年以来,在20年前的65 Mev Cyclotron Medicicc及其相关的光束线之后,在1991年以来,在1991年以来,在antoine Lacassagne(CAL)中的质子疗法进行了治疗。专用的眼线针对浅肿瘤和尖锐的Penumbrae进行了优化,提供了最先进的护理质量。由CAR的工作人员专门维持的回旋加冬,光束线和治疗系统已被证明具有特别强劲,持续高于95%。然而,该系统是老化,并且需要更换以确保使用Medicyc继续眼科治疗方法。本文介绍了Mediccc新治疗控制和剂量测量系统的开发和性能。软件和硬件架构设计选择在剂量递送精度,鲁棒性和患者安全性要求的背景下讨论。提出了治疗递送,剂量监测和光束质量保证系统的性能。

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