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Determination of an optimal organ set to implement deformations to support four‐dimensional dose calculations in radiation therapy planning

机译:确定最佳器官集以实施变形以支持放射治疗计划中的三维剂量计算

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摘要

Surface‐based deformable image registration to generate a four‐dimensional (4D) dose calculation in radiation treatment planning requires the selection of a set of organ contours representing a basis set from which to generate anatomic deformation. The purpose of the present work was to determine the optimal set of organs needed to generate a basis set for deformation in treatment planning for thoracic tumors, such that the required computations are minimized, but that dose accuracy is high. Using retrospectively reviewed records and a deformable model algorithm in a research version of a commercial radiation treatment planning system, we calculated 4D dose distributions based on treatment plans for 10 patients with thoracic tumors. Various combinations of organs (total lungs, heart, spinal cord, external body surface) were used to generate the basis set used in the calculations for deformations. The external surface contour did not have a noticeable effect on the dose calculation. Total lung, heart, and spinal cord together provided an adequate set of deformation organs to generate accurate dose deformations. The magnitude of the calculated dose differences had no obvious relationship to tumor parameters, including site, histologic type, disease stage, extent of motion, or degree of centralization.PACS numbers: 87.55.D‐, 87.55.dk, 87.55.kh
机译:基于表面的可变形图像配准以在放射治疗计划中生成四维(4D)剂量计算,需要选择一组器官轮廓,这些器官轮廓代表从中产生解剖形变的基础集。本工作的目的是确定在胸腔肿瘤治疗计划中生成变形基础集所需的最佳器官集,以使所需的计算量最小化,但剂量准确性很高。在商业放射治疗计划系统的研究版本中,使用回顾性回顾记录和可变形模型算法,我们基于10例胸腔肿瘤患者的治疗计划计算了4D剂量分布。使用器官的各种组合(总肺,心脏,脊髓,体外表面)来生成用于变形计算的基础集。外表面轮廓对剂量计算没有明显影响。整个肺,心脏和脊髓共同提供了足够的一组变形器官,以产生准确的剂量变形。计算出的剂量差异的大小与肿瘤参数无明显关系,包括部位,组织学类型,疾病分期,运动程度或集中程度.PACS编号:87.55.D-,87.55.dk,87.55.kh

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