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Quality assurance of radiation therapy planning systems: current status and remaining challenges.

机译:放射治疗计划系统的质量保证:现状和尚存的挑战。

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Computerized radiation therapy planning systems (RTPSs) are pivotal for treatment planning. The acceptance, commissioning, and quality control of RTPSs are uniquely complex and are described in the American Association of Physicists in Medicine Task Group Report 53 (1998) and International Atomic Energy Agency Technical Report Series No. 430 (2004). The International Atomic Energy Agency also developed a document and data package for use by vendors and purchasers to aid with acceptance testing of RTPSs. This document is based on International Electrotechnical Commission standard 62083 (2000) and describes both "type" tests to be performed in the factory and "site" tests to be performed in the clinic. The American Association of Physicists Task Group Report 67 described benchmark tests for the validation of dose calculation algorithms. Test data are being produced with the backing of the U.S. National Cancer Institute. However, significant challenges remain. Technology keeps evolving rapidly, thus requiring new quality assurance (QA) procedures. Intensity-modulated radiation therapy with its use of inverse optimization has added a new dimension to QA, because the results are not intuitively obvious. New technologies such as real-time ultrasound guidance for brachytherapy, TomoTherapy, and Cyberknife, require their own specialized RTPSs with unique QA requirements. On-line imaging allows for the generation of dose reconstructions using image warping techniques to determine the daily dose delivered to the patient. With increasing computer speeds, real-time reoptimization of treatment plans will become a reality. Gating technologies will require four-dimensional dose calculations to determine the actual dose delivered to tissue voxels. With these rapidly changing technologies, it is essential that a strong QA culture is invoked in every institution implementing these procedures and that new protocols are developed as a part of the clinical implementation process.
机译:计算机化放射治疗计划系统(RTPS)对于治疗计划至关重要。 RTPS的接受,调试和质量控制异常复杂,在《美国物理学会医学会任务组报告53》(1998年)和《国际原子能机构技术报告丛书》第430期(2004年)中进行了描述。国际原子能机构还开发了一个文档和数据包,供卖方和购买者使用,以帮助进行RTPS的验收测试。该文档基于国际电工委员会标准62083(2000),并描述了要在工厂执行的“类型”测试和要在诊所进行的“现场”测试。美国物理学家协会任务组报告67描述了用于验证剂量计算算法的基准测试。测试数据是在美国国家癌症研究所的支持下产生的。但是,仍然存在重大挑战。技术不断发展,因此需要新的质量保证(QA)程序。强度调制放射疗法及其反向优化技术的使用为质量保证增加了新的维度,因为结果在直观上并不明显。用于近距离放射治疗,TomoTherapy和Cyber​​knife的实时超声引导等新技术需要具有独特QA要求的专用RTPS。在线成像允许使用图像变形技术来确定剂量重建,以确定递送给患者的每日剂量。随着计算机速度的提高,治疗计划的实时重新优化将成为现实。门控技术将需要进行四维剂量计算,以确定传递到组织体素的实际剂量。随着这些技术的日新月异,至关重要的是,在实施这些程序的每家机构中都必须唤起强大的质量保证文化,并在临床实施过程中开发新的协议。

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