Evaluation of the accuracy of a six-degree-of-freedom robotic couch using optical surface and cone beam CT images of an SRS QA phantom

IF 0.3 Q4 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Q. Zhang, Y. Chen, D. Fang, C. Iannuzzi, E. Klein
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引用次数: 0

Abstract

Abstract Purpose: To assess the accuracy of the Varian PerfectPitch six-degree-of-freedom (6DOF) robotic couch by using a Varian SRS QA phantom. Methods: The stereotactic radiosurgery (SRS) phantom has five tungsten carbide BBs each with 7·5 mm in diameter arranged with the known geometry. Optical surface images and cone beam CT (CBCT) images of the phantom were taken at different pitch, roll and rotation angles. The pitch, roll, and rotation angles were varied from −3 to 3 degrees by inputs from the linac console. A total of 39 Vision RT images with different rotation angle combinations were collected, and the Vision RT software was used to determine the rotation angles and translational shifts from those images. Eight CBCT images at most allowed rotational angles were analysed by in-house software. The software took the coordinates of the voxel of the maximum CT number inside a 7·5-mm sphere surrounding one BB to be the measured position of this BB. Expected BB positions at different rotation angles were determined by multiplying measured BB positions at zero pitch and roll values by a rotation matrix. Applying the rotation matrix to 5 BB positions yielded 15 equations. A linear least square method was used for regression analysis to approximate the solutions of those equations. Results: Of the eight calculations from CBCT images, the maximum rotation angle differences (degree) were 0·10 for pitch, 0·15 for roll and 0·09 for yaw. The maximum translation differences were 0·3 mm in the left–right direction, 0·5 mm in the anterior–posterior direction and 0·4 mm in the superior–inferior direction. Conclusions: The uncertainties of the 6-DOF couch were examined with the methods of optical surface imaging and CBCT imaging of the SRS QA phantom. The rotational errors were less than 0·2 degree, and the isocentre shifts were less than 0·8 mm.
利用SRS QA幻影的光学表面和锥束CT图像评估六自由度机器人沙发的精度
摘要目的:使用Varian SRS QA体模评估Varian PerfectPitch六自由度(6DOF)机器人沙发的准确性。方法:立体定向放射外科(SRS)体模具有5个直径为7.5mm的碳化钨BB,每个BB以已知的几何形状排列。在不同的俯仰角、滚转角和旋转角下拍摄体模的光学表面图像和锥形束CT(CBCT)图像。通过直线加速器控制台的输入,俯仰角、滚转角和旋转角在−3到3度之间变化。共收集了39张具有不同旋转角度组合的视觉RT图像,并使用视觉RT软件从这些图像中确定旋转角度和平移位移。内部软件分析了在最大允许旋转角度下的8张CBCT图像。该软件将一个BB周围的7.5mm球体内最大CT数的体素坐标作为该BB的测量位置。通过将零俯仰和滚转值下的测量BB位置乘以旋转矩阵来确定不同旋转角度下的预期BB位置。将旋转矩阵应用于5个BB位置产生了15个方程。使用线性最小二乘法进行回归分析,以近似这些方程的解。结果:在CBCT图像的8次计算中,俯仰、滚转和偏航的最大旋转角度差(度)分别为0.10、0.15和0.09。最大平移差异在左右方向为0.3 mm,在前后方向为0.5 mm,在上下方向为0.4 mm。结论:采用SRS QA体模的光学表面成像和CBCT成像方法,对6自由度沙发的不确定性进行了检查。旋转误差小于0.2度,等中心位移小于0.8毫米。
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来源期刊
Journal of Radiotherapy in Practice
Journal of Radiotherapy in Practice RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
0.80
自引率
0.00%
发文量
36
期刊介绍: Journal of Radiotherapy in Practice is a peer-reviewed journal covering all of the current modalities specific to clinical oncology and radiotherapy. The journal aims to publish research from a wide range of styles and encourage debate and the exchange of information and opinion from within the field of radiotherapy practice and clinical oncology. The journal also aims to encourage technical evaluations and case studies as well as equipment reviews that will be of interest to an international radiotherapy audience.
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