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表面 X 射线放射治疗设备的机器特征描述和中心轴深度剂量数据。

Machine characterization and central axis depth dose data of a superficial x-ray radiotherapy unit.

机构信息

Department of Radiation Oncology, University of Texas Southwestern Medical Center, Dallas, TX, United States of America.

Department of Radiation Oncology, Rutgers Cancer Institute of New Jersey, Rutgers Robert Wood Johnson Medical School, New Brunswick, NJ, United States of America.

出版信息

Biomed Phys Eng Express. 2022 Dec 8;9(1). doi: 10.1088/2057-1976/aca611.

Abstract

. The purpose of this study is to present data from the clinical commissioning of an Xstrahl 150 x-ray unit used for superficial radiotherapy,. Commissioning tasks included vendor acceptance tests, timer reproducibility, linearity and end-effect measurements, half-value layer (HVL) measurements, inverse square law verification, head-leakage measurements, and beam output calibration. In addition, percent depth dose (PDD) curves were determined for different combinations of filter/kV settings and applicators. Automated PDD water phantom scans were performed utilizing four contemporary detectors: a microDiamond detector, a microSilicon detector, an EDGE detector, and a PinPoint ionization chamber. The measured PDD data were compared to the published values in BJR Supplement 25,. The x-ray unit's mechanical, safety, and radiation characteristics were within vendor-stated specifications. Across sixty commissioned x-ray beams, the PDDs determined in water using solid state detectors were in excellent agreement with the BJR 25 data. For the lower (<100 kVp) and medium-energy (≥100 kVp) superficial beams the average agreement was within [-3.6,+0.4]% and [-3.7,+1.4]% range, respectively. For the high-energy superficial (low-energy orthovoltage) x-rays at 150 kVp, the average difference for the largest 20 × 20 cmcollimator was (-0.7 ± 1.0)%,. This study presents machine characterization data collected for clinical use of a superficial x-ray unit. Special focus was placed on utilizing contemporary detectors and techniques for the relative PDD measurements using a motorized water phantom. The results in this study confirm that the aggregate values published in the BJR 25 report still serve as a valid benchmark when comparing data from site-specific measurements, or the reference data for clinical utilization without such measurements,. This paper presents comprehensive data from the acceptance and commissioning of a modern kilovoltage superficial x-ray radiotherapy machine. Comparisons between the PDD data measured in this study using different detectors and BJR 25 data are highlighted.

摘要

本研究旨在呈现 Xstrahl 150 射线单位在浅表放射治疗中的临床调试数据。调试任务包括供应商验收测试、定时器重现性、线性度和端效应测量、半价层(HVL)测量、平方反比定律验证、头漏测量和射束输出校准。此外,还针对不同的滤光片/kV 设置和敷贴器组合确定了百分深度剂量(PDD)曲线。利用四种现代探测器:微金刚石探测器、微硅探测器、EDGE 探测器和 PinPoint 电离室,对 PDD 水模自动扫描进行了测量。测量的 PDD 数据与 BJR 增刊 25 中的公布值进行了比较。射线单位的机械、安全和辐射特性均符合供应商规定的规格。在经过调试的 60 束射线中,使用固态探测器在水中确定的 PDD 与 BJR 25 数据非常吻合。对于较低(<100 kVp)和中能(≥100 kVp)浅表射线,平均一致性在[-3.6,+0.4]%和[-3.7,+1.4]%范围内。对于 150 kVp 的高能浅表(低能正交)射线,最大 20×20 cm 准直器的平均差值为(-0.7±1.0)%。本研究介绍了为浅表 X 射线单位的临床应用而收集的机器特征数据。特别关注利用现代水模和电动设备进行相对 PDD 测量的技术。本研究的结果证实,BJR 25 报告中汇总的数值仍然可以作为比较特定部位测量数据或在没有此类测量的情况下为临床应用提供参考数据的有效基准。本论文介绍了一种现代千伏浅表 X 射线放射治疗机的验收和调试的全面数据。重点介绍了本研究中使用不同探测器测量的 PDD 数据与 BJR 25 数据之间的比较。

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