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Use of treatment log files in spot scanning proton therapy as part of patient-specific quality assurance

机译:治疗日志文件在点扫描质子治疗中的使用,作为患者特定质量保证的一部分

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Purpose: The purpose of this work was to assess the monitor unit (MU) values and position accuracy of spot scanning proton beams as recorded by the daily treatment logs of the treatment control system, and furthermore establish the feasibility of using the delivered spot positions and MU values to calculate and evaluate delivered doses to patients. Methods: To validate the accuracy of the recorded spot positions, the authors generated and executed a test treatment plan containing nine spot positions, to which the authors delivered ten MU each. The spot positions were measured with radiographic films and Matrixx 2D ion-chambers array placed at the isocenter plane and compared for displacements from the planned and recorded positions. Treatment logs for 14 patients were then used to determine the spot MU values and position accuracy of the scanning proton beam delivery system. Univariate analysis was used to detect any systematic error or large variation between patients, treatment dates, proton energies, gantry angles, and planned spot positions. The recorded patient spot positions and MU values were then used to replace the spot positions and MU values in the plan, and the treatment planning system was used to calculate the delivered doses to patients. The results were compared with the treatment plan. Results: Within a treatment session, spot positions were reproducible within ??0.2 mm. The spot positions measured by film agreed with the planned positions within ??1 mm and with the recorded positions within ??0.5 mm. The maximum day-to-day variation for any given spot position was within ??1 mm. For all 14 patients, with ??1 500 000 spots recorded, the total MU accuracy was within 0.1% of the planned MU values, the mean (x, y) spot displacement from the planned value was (-0.03 mm, -0.01 mm), the maximum (x, y) displacement was (1.68 mm, 2.27 mm), and the (x, y) standard deviation was (0.26 mm, 0.42 mm). The maximum dose difference between calculated dose to the patient based on the plan and recorded data was within 2%. Conclusions: The authors have shown that the treatment log file in a spot scanning proton beam delivery system is precise enough to serve as a quality assurance tool to monitor variation in spot position and MU value, as well as the delivered dose uncertainty from the treatment delivery system. The analysis tool developed here could be useful for assessing spot position uncertainty and thus dose uncertainty for any patient receiving spot scanning proton beam therapy. ? 2013 American Association of Physicists in Medicine.
机译:目的:这项工作的目的是评估由治疗控制系统的日常治疗记录所记录的斑点扫描质子束的监测单元(MU)值和位置准确性,并进一步确定使用交付的斑点位置和位置的可行性。 MU值用于计算和评估向患者提供的剂量。方法:为了验证记录的现场位置的准确性,作者生成并执行了一个包含9个现场位置的测试处理计划,每个作者交付了10个MU。用射线照相胶片和位于等中心平面的Matrixx 2D离子室阵列测量光斑位置,并比较从计划位置和记录位置的位移。然后使用14位患者的治疗记录来确定斑MU值和扫描质子束传输系统的位置精度。单变量分析用于检测患者,治疗日期,质子能量,门架角度和计划的斑点位置之间的任何系统误差或较大差异。然后,使用记录的患者点位置和MU值替换计划中的点位置和MU值,并使用治疗计划系统来计算向患者提供的剂量。将结果与治疗计划进行比较。结果:在治疗过程中,斑点位置可在0.2 mm范围内重现。用胶片测得的光点位置与计划位置一致,在±1mm之内,而记录位置在±0.5mm之内。对于任何给定的光斑位置,最大的每日变化都在≤1 mm之内。对于所有14位记录了1500万点的患者,总MU准确度在计划MU值的0.1%以内,相对于计划值的平均(x,y)点位移为(-0.03 mm,-0.01 mm ),最大(x,y)位移为(1.68 mm,2.27 mm),并且(x,y)标准偏差为(0.26 mm,0.42 mm)。根据计划计算的患者剂量与记录的数据之间的最大剂量差在2%以内。结论:作者已经表明,点扫描质子束传输系统中的处理日志文件足够精确,可以用作质量保证工具来监视点位置和MU值的变化,以及来自处理输送的输送剂量不确定性系统。对于任何接受斑点扫描质子束治疗的患者,此处开发的分析工具可用于评估斑点位置不确定性,从而评估剂量不确定性。 ? 2013年美国医学物理学会。

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