Feddersen Theresa V, Rowshanfarzad Pejman, Abel Tamara N, Ebert Martin A
Department of Physics, University of Western Australia, Crawley, WA, Australia.
Department of Radiotherapy, Erasmus University Medical Center, Rotterdam, The Netherlands.
Australas Phys Eng Sci Med. 2019 Jun;42(2):541-551. doi: 10.1007/s13246-019-00755-4. Epub 2019 Apr 15.
Characteristics of a small-animal radiotherapy device, the X-RAD SmART, are described following commissioning of the device for pre-clinical radiotherapy research. Performance characteristics were assessed using published standards and compared with previous results published for similar systems. Operational radiation safety was established. Device X-ray beam quality and output dose-rate were found to be consistent with those reported for similar devices. Output steadily declined over 18 months though remained within tolerance levels. There is considerable variation in output factor across the international installations for the smallest field size (varying by more than 30% for 2.5 mm diameter fields). Measured depth dose and profile data was mostly consistent with that published, with some differences in penumbrae and generally reduced flatness. Target localisation is achieved with an imaging panel and with automatic corrections for panel flex and device mechanical instability, targeting within 0.2 mm is achievable. The small-animal image-guided radiotherapy platform has been implemented and assessed and found to perform as specified. The combination of kV energy and high spatial precision make it suitable for replicating clinical dose distributions at the small-animal scale, though dosimetric uncertainties for the narrowest fields need to be acknowledged.
在将一台小动物放射治疗设备X-RAD SmART投入临床前放射治疗研究调试后,对其特性进行了描述。使用已发布的标准评估性能特性,并与先前针对类似系统发布的结果进行比较。确立了操作辐射安全性。发现设备的X射线束质量和输出剂量率与类似设备报告的一致。尽管输出在18个月内稳步下降,但仍保持在公差范围内。对于最小射野尺寸,国际上各安装点的输出因子存在相当大的差异(直径2.5毫米的射野差异超过30%)。测量的深度剂量和剂量分布数据大多与已发表的数据一致,在半值层方面存在一些差异,且平整度普遍降低。通过成像板以及对板的弯曲和设备机械不稳定性进行自动校正来实现靶区定位,可实现0.2毫米以内的定位精度。已实施并评估了小动物图像引导放射治疗平台,发现其性能符合规定。千伏能量和高空间精度的结合使其适用于在小动物尺度上复制临床剂量分布,不过需要认识到最窄射野的剂量测定不确定性。