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线性加速器质量保证的失效模式和影响分析的定量方法。

Quantitative Approach to Failure Mode and Effect Analysis for Linear Accelerator Quality Assurance.

机构信息

Department of Radiation Oncology, Duke University Medical Center, Durham, North Carolina.

Department of Radiation Oncology, Duke University Medical Center, Durham, North Carolina.

出版信息

Int J Radiat Oncol Biol Phys. 2017 May 1;98(1):56-62. doi: 10.1016/j.ijrobp.2017.01.035. Epub 2017 Jan 24.

Abstract

PURPOSE

To determine clinic-specific linear accelerator quality assurance (QA) TG-142 test frequencies, to maximize physicist time efficiency and patient treatment quality.

METHODS AND MATERIALS

A novel quantitative approach to failure mode and effect analysis is proposed. Nine linear accelerator-years of QA records provided data on failure occurrence rates. The severity of test failure was modeled by introducing corresponding errors into head and neck intensity modulated radiation therapy treatment plans. The relative risk of daily linear accelerator QA was calculated as a function of frequency of test performance.

RESULTS

Although the failure severity was greatest for daily imaging QA (imaging vs treatment isocenter and imaging positioning/repositioning), the failure occurrence rate was greatest for output and laser testing. The composite ranking results suggest that performing output and lasers tests daily, imaging versus treatment isocenter and imaging positioning/repositioning tests weekly, and optical distance indicator and jaws versus light field tests biweekly would be acceptable for non-stereotactic radiosurgery/stereotactic body radiation therapy linear accelerators.

CONCLUSIONS

Failure mode and effect analysis is a useful tool to determine the relative importance of QA tests from TG-142. Because there are practical time limitations on how many QA tests can be performed, this analysis highlights which tests are the most important and suggests the frequency of testing based on each test's risk priority number.

摘要

目的

确定特定临床直线加速器质量保证(QA)TG-142 测试频率,以最大限度地提高物理学家的时间效率和患者治疗质量。

方法和材料

提出了一种新的故障模式和影响分析定量方法。九台直线加速器的 QA 记录提供了故障发生率的数据。通过在头颈部调强放射治疗计划中引入相应的误差,对测试失败的严重程度进行建模。将每日直线加速器 QA 的相对风险作为测试性能频率的函数进行计算。

结果

尽管每日影像 QA(影像与治疗等中心和影像定位/重新定位)的故障严重程度最大,但输出和激光测试的故障发生率最高。综合排名结果表明,对于非立体定向放射外科/立体定向体放射治疗直线加速器,每天进行输出和激光测试、每周进行影像与治疗等中心和影像定位/重新定位测试、每两周进行光学距离指示器和机架与光野测试是可以接受的。

结论

故障模式和影响分析是确定 TG-142 中 QA 测试相对重要性的有用工具。由于进行 QA 测试的实际时间限制,因此该分析突出了哪些测试最重要,并根据每个测试的风险优先数建议测试频率。

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