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美国医学物理学家协会第 201 工作组报告:外照射治疗数据传输的质量管理。

Report of Task Group 201 of the American Association of Physicists in Medicine: Quality management of external beam therapy data transfer.

机构信息

Department of Radiation Oncology, West Virginia University, Morgantown, WV, 26506, USA.

UT MD Anderson Cancer Center, Houston, TX, 77006, USA.

出版信息

Med Phys. 2021 Jun;48(6):e86-e114. doi: 10.1002/mp.14868. Epub 2021 Apr 23.

Abstract

With the advancement of data-intensive technologies, such as image-guided radiation therapy (IGRT) and intensity-modulated radiation therapy (IMRT), the amount and complexity of data to be transferred between clinical subsystems have increased beyond the reach of manual checking. As a result, unintended treatment deviations (e.g., dose errors) may occur if the treatment system is not closely monitored by a comprehensive data transfer quality management program (QM). This report summarizes the findings and recommendations from the task group (TG) on quality assurance (QA) of external beam treatment data transfer (TG-201), with the aim to assist medical physicists in designing their own data transfer QM. As a background, a section of this report describes various models of data flow (distributed data repositories and single data base systems) and general data test characteristics (data integrity, interpretation, and consistency). Recommended tests are suggested based on the collective experience of TG-201 members. These tests are for the acceptance of, commissioning of, and upgrades to subsystems that store and/or modify clinical treatment data. As treatment complexity continues to evolve, we will need to do and know more about ensuring the quality of data transfers. The report concludes with the recommendation to move toward data transfer open standards compatibility and to develop tools that automate data transfer QA.

摘要

随着数据密集型技术的进步,例如图像引导放射治疗(IGRT)和强度调制放射治疗(IMRT),在临床子系统之间传输的数据量和复杂性已经超出了手动检查的范围。因此,如果治疗系统没有通过全面的数据传输质量管理计划(QM)进行密切监控,就可能会发生意外的治疗偏差(例如剂量误差)。本报告总结了外部束治疗数据传输质量保证(QA)任务组(TG)的调查结果和建议(TG-201),旨在帮助医学物理学家设计自己的数据传输 QM。作为背景,本报告的一部分描述了各种数据流模型(分布式数据存储库和单一数据库系统)和一般数据测试特征(数据完整性、解释和一致性)。根据 TG-201 成员的集体经验,建议了推荐的测试。这些测试是为了接受、调试和升级存储和/或修改临床治疗数据的子系统。随着治疗复杂性的不断发展,我们需要做更多的工作并了解更多关于确保数据传输质量的知识。报告最后建议朝着数据传输开放标准兼容性的方向发展,并开发自动化数据传输 QA 的工具。

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