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首页> 外文期刊>Physics in medicine and biology. >Coordinate transformations for BEAM/EGSnrc Monte Carlo dose calculations of non-coplanar fields received from a DICOM-compliant treatment planning system
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Coordinate transformations for BEAM/EGSnrc Monte Carlo dose calculations of non-coplanar fields received from a DICOM-compliant treatment planning system

机译:从符合DICOM的治疗计划系统接收的非共面场的BEAM / EGSnrc蒙特卡洛剂量计算的坐标转换

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摘要

The Monte Carlo (MC) method provides the most accurate to-date dose calculations in heterogeneous media and complex geometries, and this spawns increasing interest in incorporating MC calculations in the treatment planning quality assurance process. This process involves MC dose calculations for the treatment plans produced clinically. Commonly used in radiotherapy, MC codes are BEAMnrc and DOSXYZnrc, which transport particles in a coordinate system (c.s.) that has been established historically and does not correspond to the c.s. of treatment planning systems (TPSs). Relative rotations of these c.s. are not straightforward, especially for non-coplanar treatments. Transformation equations are therefore required to re-calculate a treatment plan using BEAM/DOSXYZnrc codes. This paper presents such transformations for beam angles defined in a DICOM-compliant treatment planning coordinate system. Verification of the derived transformations with two three-field plans simulated on a phantom using TPS as well as MC codes has been performed demonstrating exact geometrical agreement of the MC treatment fields' placement.
机译:蒙特卡洛(MC)方法在异构介质和复杂几何形状中提供了最准确的最新剂量计算,这引起了人们越来越多的兴趣,希望将MC计算纳入治疗计划质量保证过程。此过程涉及临床制定的治疗计划的MC剂量计算。 MC代码通常用于放射治疗中,它们是BEAMnrc和DOSXYZnrc,它们在历史上已经建立的坐标系(c.s.)中传输粒子,并且不对应于c.s。治疗计划系统(TPS)。这些cs的相对旋转。并不简单,尤其是对于非共面治疗。因此,需要使用转换方程式,以使用BEAM / DOSXYZnrc代码重新计算治疗计划。本文介绍了在符合DICOM的治疗计划坐标系统中定义的光束角的这种转换。使用TPS以及MC代码对在幻影上模拟的两个三场计划对派生的变换进行了验证,这表明了MC治疗区域的放置位置的精确几何一致性。

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