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Commissioning of a dedicated commercial Co‐60 total body irradiation unit

机译:调试专用的商用Co-60全身辐射装置

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摘要

We describe the commissioning of the first dedicated commercial total body irradiation (TBI) unit in clinical operation. The Best Theratronics GammaBeam 500 is a Co‐60 teletherapy unit with extended field size and imaging capabilities. Radiation safety, mechanical and imaging systems, and radiation output are characterized. Beam data collection, calibration, and external dosimetric validation are described. All radiation safety and mechanical tests satisfied relevant requirements and measured dose distributions meet recommendations of American Association of Physicists in Medicine (AAPM) Report #17. At a typical treatment distance, the dose rate in free space per unit source activity using the thick flattening filter is 1.53 × 10−3 cGy*min−1*Ci−1. With a 14,000 Ci source, the resulting dose rate at the midplane of a typical patient is approximately 17 and 30 cGy/min using the thick and thin flattening filters, respectively, using the maximum source to couch distance. The maximum useful field size, defined by the 90% isodose line, at this location is 225 × 78 cm with field flatness within 5% over the central 178 × 73 cm. Measured output agreed with external validation within 0.5%. End‐to‐end testing was performed in a modified Rando phantom. In‐house MATLAB software was developed to calculate patient‐specific dose distributions using DOSXYZnrc, and fabricate custom 3D‐printed forms for creating patient‐specific lung blocks. End‐to‐end OSLD and diode measurements both with and without lung blocks agreed with Monte Carlo calculated doses to within 5% and in‐phantom film measurements validated dose distribution uniformity. Custom lung block transmission measurements agree well with design criteria and provide clinically favorable dose distributions within the lungs. Block placement is easily facilitated using the flat panel imaging system with an exposure time of 0.01 min. In conclusion, a novel dedicated TBI unit has been commissioned and clinically implemented. Its mechanical, dosimetric, and imaging capabilities are suitable to provide state‐of‐the‐art TBI for patients as large as 220 cm in height and 78 cm in width.
机译:我们描述了临床操作中第一台专用的商用全身辐射(TBI)单元的调试。最佳Theratronics GammaBeam 500是Co-60远距治疗仪,具有扩展的视野大小和成像功能。表征辐射安全性,机械和成像系统以及辐射输出。描述了光束数据的收集,校准和外部剂量学验证。所有辐射安全性和机械测试均满足相关要求,并且测得的剂量分布符合美国医学物理学会(AAPM)报告#17的建议。在典型的治疗距离下,使用厚展平滤波器的单位源活动的自由空间中的剂量率是1.53×10 −3 cGy * min -1 * Ci −1 。使用14,000 Ci源,使用厚和薄的展平滤波器,使用最大源到卧榻距离,典型患者中平面处的最终剂量率分别约为17和30 cGy / min。在此位置,最大有效视野由90%等剂量线定义,为225×78 cm,视野平坦度在中心178×73 cm的5%之内。测量的输出与外部验证一致,误差在0.5%以内。端到端测试是在改良的Rando体模中进行的。开发了内部MATLAB软件,以使用DOSXYZnrc计算患者特定的剂量分布,并制作定制的3D打印表格以创建患者特定的肺部阻滞。带有和不带有肺部阻滞的端到端OSLD和二极管测量结果均与Monte Carlo计算得出的剂量一致,在5%以内,而幻影内膜测量结果验证了剂量分布的均匀性。定制的肺部传导阻滞测量与设计标准非常吻合,并在肺内提供了临床上理想的剂量分布。使用平板成像系统以0.01分钟的曝光时间可轻松实现块放置。总而言之,新型的专用TBI装置已投入使用并已在临床上实施。它的机械,剂量和成像功能适合为身高220厘米,宽78厘米的患者提供最新的TBI。

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