首页> 外文会议>Conference on physics of medical imaging >Spot scanning proton therapy plan assessment: design and development of a dose verification application for use in routine clinical practice.
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Spot scanning proton therapy plan assessment: design and development of a dose verification application for use in routine clinical practice.

机译:点扫描质子治疗计划评估:设计和开发用于常规临床实践的剂量验证应用程序。

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The use of radiation therapy for the treatment of cancer has been carried out clinically since the late 1800's. Early on however, it was discovered that a radiation dose sufficient to destroy cancer cells can also cause severe injury to surrounding healthy tissue. Radiation oncologists continually strive to find the perfect balance between a dose high enough to destroy the cancer and one that avoids damage to healthy organs. Spot scanning or "pencil beam" proton radiotherapy offers another option to improve on this. Unlike traditional photon therapy, proton beams stop in the target tissue, thus better sparing all organs beyond the targeted tumor. In addition, the beams are far narrower and thus can be more precisely "painted" onto the tumor, avoiding exposure to surrounding healthy tissue. To safely treat patients with proton beam radiotherapy, dose verification should be carried out for each plan prior to treatment. Proton dose verification systems are not currently commercially available so the Department of Radiation Oncology at the Mayo Clinic developed its own, called DOSeCHECK, which offers two distinct dose simulation methods: GPU-based Monte Carlo and CPU-based analytical. The three major components of the system include the web-based user interface, the Linux-based dose verification simulation engines, and the supporting services and components. The architecture integrates multiple applications, libraries, platforms, programming languages, and communication protocols and was successfully deployed in time for Mayo Clinic's first proton beam therapy patient. Having a simple, efficient application for dose verification greatly reduces staff workload and provides additional quality assurance, ultimately improving patient safety.
机译:自1800年代后期以来,已经在临床上进行了放射疗法在癌症治疗中的应用。但是,很早就发现足以破坏癌细胞的辐射剂量也会对周围的健康组织造成严重伤害。放射肿瘤学家一直在努力寻找在足以破坏癌症的高剂量与避免损害健康器官的剂量之间达到完美的平衡。点扫描或“铅笔束”质子放射疗法提供了另一种改进方法。与传统的光子疗法不同,质子束停在目标组织中,从而更好地保留了目标肿瘤以外的所有器官。另外,光束更窄,因此可以更精确地“绘制”在肿瘤上,避免暴露于周围的健康组织。为了安全地对质子束放射治疗的患者进行治疗,应在治疗前针对每个计划进行剂量验证。质子剂量验证系统目前尚无商业销售,因此Mayo诊所的放射肿瘤学系开发了自己的名为DOSeCHECK的系统,该系统提供了两种不同的剂量模拟方法:基于GPU的蒙特卡洛和基于CPU的分析。系统的三个主要组件包括基于Web的用户界面,基于Linux的剂量验证模拟引擎以及支持服务和组件。该架构集成了多个应用程序,库,平台,编程语言和通信协议,并已成功为Mayo Clinic的第一位质子束治疗患者及时部署。具有简单,有效的剂量验证应用程序可以大大减少人员工作量,并提供额外的质量保证,从而最终提高患者的安全性。

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