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螺旋断层放射治疗质量保证

Helical tomotherapy quality assurance.

作者信息

Balog John, Soisson Emilie

机构信息

Department of Radiation Oncology, Mohawk Valley Medical Physics, Rome, NY 13440, USA.

出版信息

Int J Radiat Oncol Biol Phys. 2008;71(1 Suppl):S113-7. doi: 10.1016/j.ijrobp.2007.10.001.

Abstract

Helical tomotherapy uses a dynamic delivery in which the gantry, treatment couch, and multileaf collimator leaves are all in motion during treatment. This results in highly conformal radiotherapy, but the complexity of the delivery is partially hidden from the end-user because of the extensive integration and automation of the tomotherapy control systems. This presents a challenge to the medical physicist who is expected to be both a system user and an expert, capable of verifying relevant aspects of treatment delivery. A related issue is that a clinical tomotherapy planning system arrives at a customer's site already commissioned by the manufacturer, not by the clinical physicist. The clinical physicist and the manufacturer's representative verify the commissioning at the customer site before acceptance. Theoretically, treatment could begin immediately after acceptance. However, the clinical physicist is responsible for the safe and proper use of the machine. In addition, the therapists and radiation oncologists need to understand the important machine characteristics before treatment can proceed. Typically, treatment begins about 2 weeks after acceptance. This report presents an overview of the tomotherapy system. Helical tomotherapy has unique dosimetry characteristics, and some of those features are emphasized. The integrated treatment planning, delivery, and patient-plan quality assurance process is described. A quality assurance protocol is proposed, with an emphasis on what a clinical medical physicist could and should check. Additionally, aspects of a tomotherapy quality assurance program that could be checked automatically and remotely because of its inherent imaging system and integrated database are discussed.

摘要

螺旋断层放射治疗采用动态照射方式,即在治疗过程中机架、治疗床和多叶准直器叶片均处于运动状态。这可实现高度适形放疗,但由于断层放射治疗控制系统的广泛集成和自动化,照射的复杂性在一定程度上对终端用户是隐藏的。这给医学物理师带来了挑战,他们既要作为系统用户,又要作为专家,能够验证治疗照射的相关方面。一个相关问题是,临床断层放射治疗计划系统在抵达客户现场时已由制造商而非临床物理师进行了调试。临床物理师和制造商代表在验收前在客户现场对调试进行验证。理论上,验收后即可立即开始治疗。然而,临床物理师要对机器的安全和正确使用负责。此外,在治疗能够进行之前,治疗师和放射肿瘤学家需要了解机器的重要特性。通常,治疗在验收后约2周开始。本报告概述了断层放射治疗系统。强调了螺旋断层放射治疗独特的剂量学特征。描述了综合治疗计划、照射及患者计划质量保证过程。提出了一项质量保证方案,重点是临床医学物理师可以且应该检查的内容。此外,还讨论了由于其固有的成像系统和集成数据库而可自动和远程检查的断层放射治疗质量保证计划的各个方面。

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