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Detectability of fiducials’ positions for real‐time target tracking system equipping with a standard linac for multiple fiducial markers

机译:带标准LINAC对多基准标记的实时目标跟踪系统的基准态位置的可检测性

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Purpose To investigate the detectability of fiducial markers’ positions for real‐time target tracking system equipping with a standard linac. The hypothesis is that the detectability depends on the type of fiducial marker and the gantry angle of acquired triggered images. Methods Three types of ball fiducials and four slim fiducials with lengths of 3 and 5?mm were prepared for this study. Triggered images with three similar fiducials were acquired at every 10° during the conformal arc irradiation to detect the target position. Although only one type of arrangement was prepared for the ball fiducials, a three‐type arrangement was prepared for the slim fiducials, such as parallel, orthogonal, and oblique with 45° to the gantry‐couch direction. To measure the detectability of the real‐time target tracking system for each fiducial and arrangement, detected marker positions were compared with expected marker positions at every angle of acquired triggered images. Results For the ball‐type fiducial, the maximum difference between the detected marker positions and expected marker positions was 0.3?mm in all directions. For the slim fiducial arranged parallel and oblique with 45°, the maximum difference was 0.4?mm in all directions. When each slim fiducial was arranged orthogonal to the gantry‐couch direction, the maximum difference was 1.5?mm for the length of 3?mm, and 3.2?mm for the length of 5?mm. Conclusions The detectability of fiducial markers’ positions for the real‐time target tracking system equipping with a standard linac depends on the form and insertion angles of the fiducials.
机译:目的是研究基准标记的实时目标跟踪系统配备标准LINAC的检测性。假设是可检测性取决于基准标记的类型和获取触发图像的龙门角角度。方法为这项研究制备了三种类型的球基束和长度为3和5Ωmm的球形基准。在保形电弧照射期间每10°在每10°期间获得具有三种类似基准的触发图像以检测目标位置。尽管仅为球基翼准备了一种类型的布置,但是为狭长的基准(例如平行,正交,并且45°)为龙门式沙发方向而制定三种布置。为了测量每个基准和布置的实时目标跟踪系统的可检测性,将检测到的标记位置与在获取触发图像的每角度的预期标记位置进行比较。球型基准的结果,检测标记位置与预期标记位置之间的最大差为0.3Ωmm。对于平行布置平行的平行和倾斜,倾斜度为45°,所有方向的最大差为0.4ΩΩmm。当每个超薄线束与龙门 - 沙发方向正交时,最大差为1.5Ωmm,长度为3Ωmm,3.2Ωmm为5Ωmm。结论基准标记对具有标准LINAC的实时目标跟踪系统的基准标记位置的检测性取决于基准的形状和插入角。

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