Division of Clinical Radiology Service, Kyoto University Hospital, Kyoto, Japan.
Phys Med Biol. 2010 Jan 7;55(1):1-10. doi: 10.1088/0031-9155/55/1/001.
The aim of this paper is to assess the overall geometric accuracy of the Novalis system using the Robotic Tilt Module in terms of the uncertainty in frameless stereotactic radiotherapy. We analyzed the following three metrics: (1) the correction accuracy of the robotic couch, (2) the uncertainty of the isocenter position with gantry and couch rotation, and (3) the shift in position between the isocenter and central point detected with the ExacTrac x-ray system. Based on the concept of uncertainty, the overall accuracy was calculated from these values. The accuracy in positional correction with the robotic couch was 0.07 +/- 0.22 mm, the positional shift of the isocenter associated with gantry rotation was 0.35 mm, the positional shift of the isocenter associated with couch rotation was 0.38 mm and the difference in position between the isocenter and the ExacTrac x-ray system was 0.30 mm. The accuracy of intracranial stereotactic radiosurgery with the Novalis system in our clinic was 0.31 +/- 0.77 mm. The overall geometric accuracy based on the concept of uncertainty was 0.31 +/- 0.77 mm, which is within the tolerance given in the American Association of Physicists in Medicine report no. 54.
本文旨在评估 Novalis 系统在无框架立体定向放射治疗中的不确定性方面的整体几何精度,使用机器人倾斜模块。我们分析了以下三个指标:(1)机器人治疗床的校正精度,(2)机架和治疗床旋转时等中心位置的不确定性,(3)ExacTrac X 射线系统检测到的等中心和中心点之间的位置偏移。基于不确定性的概念,从这些值计算出整体精度。机器人治疗床的位置校正精度为 0.07 +/- 0.22 毫米,与机架旋转相关的等中心位置偏移为 0.35 毫米,与治疗床旋转相关的等中心位置偏移为 0.38 毫米,等中心与 ExacTrac X 射线系统之间的位置差异为 0.30 毫米。我们诊所中颅内立体定向放射外科的 Novalis 系统精度为 0.31 +/- 0.77 毫米。基于不确定性概念的整体几何精度为 0.31 +/- 0.77 毫米,在医学物理学家协会报告号 54 中给出的容差范围内。