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拍摄三维星状射野以确定机架、准直器和治疗床的位置。

A 3D star shot to determine the gantry, collimator, and couch axes positions.

机构信息

Department of Radiation Oncology, Brody School of Medicine, East Carolina University, Greenville, North Carolina, USA.

Department of Physics, East Carolina University, Greenville, North Carolina, USA.

出版信息

J Appl Clin Med Phys. 2022 Jul;23(7):e13623. doi: 10.1002/acm2.13623. Epub 2022 Apr 29.

Abstract

A linear accelerator has three independent axes that are nominally intersecting at the isocenter. Modern treatment techniques require the coincidence of these axes to lie within a 1-mm diameter sphere. A solution to verify this requirement is to wrap a film on a cylindrical surface, align the cylinder to the linac's isocenter and gantry axis, and take multiple exposures of slits, rotating either the gantry, collimator, or couch between exposures. The resulting exposure pattern is the 3D equivalent of the 2D star shot and encodes sufficient information to determine each axis' position in 3D. Moreover, this method uses a single sheet 8"x10" film, a standard film scanner, and a phantom that can be readily built in-house, making a practical solution to this 3D-measurement problem.

摘要

直线加速器有三个独立的轴,在名义上相交于等中心。现代治疗技术要求这些轴的交点位于直径为 1 毫米的球体之内。验证这一要求的一种解决方案是在一个圆柱面上包裹胶片,将圆柱与直线加速器的等中心和旋转机架轴对齐,并对狭缝进行多次曝光,在曝光之间旋转旋转机架、准直器或治疗床。得到的曝光图案是二维星状拍摄的三维等效物,可提供足够的信息来确定三维中的每个轴的位置。此外,该方法使用了一张 8"x10" 的标准胶片、一个标准的胶片扫描仪和一个可以在内部方便地构建的体模,为这一三维测量问题提供了一个实用的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42e4/9278693/e1804ccd81fa/ACM2-23-e13623-g007.jpg

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