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Analysis of measurement deviations for the patient-specific quality assurance using intensity-modulated spot-scanning particle beams

机译:采用强度调制点扫描粒子束分析患者特定质量保证的测量偏差

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To analyze measurement deviations of patient-specific quality assurance (QA) using intensity-modulated spot-scanning particle beams, a commercial radiation dosimeter using 24 pinpoint ionization chambers was utilized. Before the clinical trial, validations of the radiation dosimeter and treatment planning system were conducted. During the clinical trial 165 measurements were performed on 36 enrolled patients. Two or three fields of particle beam were used for each patient. Measurements were typically performed with the dosimeter placed at special regions of dose distribution along depth and lateral profiles. In order to investigate the dosimeter accuracy, repeated measurements with uniform dose irradiations were also carried out. A two-step approach was proposed to analyze 24 sampling points over a 3D treatment volume. The mean value and the standard deviation of each measurement did not exceed 5% for all measurements performed on patients with various diseases. According to the defined intervention thresholds of mean deviation and the distance-to-agreement concept with a Gamma index analysis using criteria of 3.0% and 2 mm, a decision could be made regarding whether the dose distribution was acceptable for the patient. Based measurement results, deviation analysis was carried out. In this study, the dosimeter was used for dose verification and provided a safety guard to assure precise dose delivery of highly modulated particle therapy. Patient-specific QA will be investigated in future clinical operations.
机译:为了利用强度调制的点扫描粒子束来分析患者特定质量保证(QA)的测量偏差,使用了使用24个精瞳离子化腔室的商业辐射剂量计。在临床试验之前,进行了辐射剂量表和治疗系统的验证。在临床试验期间,在36名患者中进行了165次测量。每位患者使用两种或三个粒子束。通常用沿着深度和横向轮廓置于剂量分布的特殊区域的剂量计进行测量。为了研究剂量计精度,还进行了均匀剂量辐射的重复测量。提出了一种两步的方法,以通过3D处理量分析24个采样点。对于各种疾病的患者进行的所有测量,每个测量的平均值和标准偏差不超过5%。根据使用3.0%和2mm的标准的γ指数分析的平均偏差的定义干预阈值和距离与达达概念,可以对患者可接受剂量分布是否可接受的决定。基于测量结果,进行了偏差分析。在该研究中,剂量计用于剂量验证,并提供了一种安全防护,以确保精确的剂量递送高度调节的颗粒疗法。将在未来的临床业务中调查患者特异性QA。

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