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使用阶梯楔形质量保证工具进行统计过程控制并验证眼镜蛇运动治疗床的位置准确性。

Statistical process control and verifying positional accuracy of a cobra motion couch using step-wedge quality assurance tool.

作者信息

Binny Diana, Lancaster Craig M, Trapp Jamie V, Crowe Scott B

机构信息

Department of Radiation Oncology, Cancer Care Services, Royal Brisbane and Women's Hospital, Queensland, Australia.

Science and Engineering Faculty, Queensland University of Technology, Queensland, Australia.

出版信息

J Appl Clin Med Phys. 2017 Sep;18(5):70-79. doi: 10.1002/acm2.12136. Epub 2017 Jul 21.

Abstract

This study utilizes process control techniques to identify action limits for TomoTherapy couch positioning quality assurance tests. A test was introduced to monitor accuracy of the applied couch offset detection in the TomoTherapy Hi-Art treatment system using the TQA "Step-Wedge Helical" module and MVCT detector. Individual X-charts, process capability (cp), probability (P), and acceptability (cpk) indices were used to monitor a 4-year couch IEC offset data to detect systematic and random errors in the couch positional accuracy for different action levels. Process capability tests were also performed on the retrospective data to define tolerances based on user-specified levels. A second study was carried out whereby physical couch offsets were applied using the TQA module and the MVCT detector was used to detect the observed variations. Random and systematic variations were observed for the SPC-based upper and lower control limits, and investigations were carried out to maintain the ongoing stability of the process for a 4-year and a three-monthly period. Local trend analysis showed mean variations up to ±0.5 mm in the three-monthly analysis period for all IEC offset measurements. Variations were also observed in the detected versus applied offsets using the MVCT detector in the second study largely in the vertical direction, and actions were taken to remediate this error. Based on the results, it was recommended that imaging shifts in each coordinate direction be only applied after assessing the machine for applied versus detected test results using the step helical module. User-specified tolerance levels of at least ±2 mm were recommended for a test frequency of once every 3 months to improve couch positional accuracy. SPC enables detection of systematic variations prior to reaching machine tolerance levels. Couch encoding system recalibrations reduced variations to user-specified levels and a monitoring period of 3 months using SPC facilitated in detecting systematic and random variations. SPC analysis for couch positional accuracy enabled greater control in the identification of errors, thereby increasing confidence levels in daily treatment setups.

摘要

本研究利用过程控制技术来确定螺旋断层放射治疗床定位质量保证测试的行动界限。引入了一项测试,以使用TQA“阶梯楔形螺旋”模块和MVCT探测器监测螺旋断层放射治疗Hi-Art治疗系统中应用的床偏移检测的准确性。使用个体X控制图、过程能力(cp)、概率(P)和可接受性(cpk)指数来监测4年的床IEC偏移数据,以检测不同行动水平下床位置精度的系统误差和随机误差。还对回顾性数据进行了过程能力测试,以根据用户指定的水平定义公差。进行了第二项研究,通过TQA模块施加物理床偏移,并使用MVCT探测器检测观察到的变化。观察到基于统计过程控制的上下控制限存在随机和系统变化,并进行了调查以维持该过程在4年和每三个月期间的持续稳定性。局部趋势分析显示,在所有IEC偏移测量的每三个月分析期内,平均变化高达±0.5毫米。在第二项研究中,使用MVCT探测器检测到的与施加的偏移之间也观察到了变化,主要在垂直方向上,并采取了行动来纠正此误差。根据结果,建议在使用阶梯螺旋模块评估机器的施加与检测测试结果后,再在每个坐标方向上应用成像偏移。对于每3个月一次的测试频率,建议用户指定的公差水平至少为±2毫米,以提高床位置精度。统计过程控制能够在达到机器公差水平之前检测到系统变化。床编码系统重新校准将变化降低到用户指定的水平,并且使用统计过程控制进行3个月的监测期有助于检测系统和随机变化。对床位置精度的统计过程控制分析能够在误差识别方面实现更大的控制,从而提高日常治疗设置的置信度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5e3/5874965/e83f21ee5d18/ACM2-18-70-g001.jpg

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