首页> 外文期刊>Medical dosimetry: official journal of the American Association of Medical Dosimetrists >Automatizing a nonscripting TPS for optimizing clinical workflow and reoptimizing IMRT/VMAT plansy
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Automatizing a nonscripting TPS for optimizing clinical workflow and reoptimizing IMRT/VMAT plansy

机译:自动化非触控TPS优化临床工作流程并重新优化IMRT / VMAT计划

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The purpose of this study was to design a toolkit that interacts with the Monaco (Elekta AB, Stockholm, Sweden) treatment planning system (TPS) for optimization of intensity-modulated radiation therapy and volumetric-modulated arc therapy without the need for a dedicated application programming interface. Successful inverse planning of radiotherapeutic treatment depends on the tweaking of many parameters: a tool was thus needed to explore these parameters more exhaustively without significantly increasing planning time. The software that we used was based on an open-source library that mimics human interaction with Microsoft Windows applications. We developed a simple Autoflow software routine that analyzes and optimizes calculated plans by considering the relative impact of different cost functions and modifying constraints accordingly. It was also designed to change segmentation parameters to fit more complex treatments. The toolkit is publicly available for download at https://bitbucket.org/hgugmradiofisica/pymonaco/src/master/. A study of prostate cancer cases was conducted to compare automatically created plans with previously treated cases. The toolkit fully automated the radiotherapy planning procedure, allowing the TPS to calculate or optimize plans during nonworking hours. In the prostate study, the use of this tool reduced the dose to organs at risk with a negligible decrease in target coverage. This tool enables the efficient use of the TPS, allowing research and clinical applications to coexist without conflict. It provides consistency and efficiency throughout the treatment planning process, which may be of great value to clinics with few resources. The impact of this tool on clinical workflow is important, as it not only provides better efficiency, but also increases treatment quality. (C) 2019 American Association of Medical Dosimetrists. Published by Elsevier Inc. All rights reserved.
机译:本研究的目的是设计一种与摩纳哥(Elekta AB,斯德哥尔摩,瑞典)进行互动的工具包,用于优化强度调制的放射治疗和体积调制的电弧治疗,而无需专用应用编程界面。成功逆计划放射治疗治疗取决于许多参数的调整:因此需要一种工具来更详尽地探索这些参数,而不会显着增加规划时间。我们使用的软件基于一个开源库,用于模仿人类与Microsoft Windows应用程序的交互。我们开发了一个简单的自动流软件例程,通过考虑不同成本函数的相对影响和相应地修改约束来分析和优化计算的计划。它还旨在改变分割参数以适应更复杂的处理。该工具包公开可用于在https://bitbucket.org/hgugmradiofisica/pymonaco/src/master/上下载。进行了对前列腺癌病例的研究,以将自动创建的计划与先前治疗的病例进行比较。该工具包完全自动化放射疗法规划程序,允许TPS在非工作时间内计算或优化计划。在前列腺研究中,使用该工具将剂量减少到器官,以危险的风险降低,目标覆盖率可忽略不计。该工具可以有效地使用TPS,允许研究和临床应用在没有冲突的情况下共存。它在整个治疗计划过程中提供了一致性和效率,这可能对少数资源有很大的价值。这种工具对临床工作流程的影响很重要,因为它不仅提供了更好的效率,而且还提高了治疗质量。 (c)2019年美国医学剂量分子协会。由elsevier Inc.保留所有权利发布。

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