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介绍一种可变形的 X 射线 CT 高分子凝胶剂量测定系统。

Introduction of a deformable x-ray CT polymer gel dosimetry system.

机构信息

Department of Physics and Astronomy, University of Victoria, Victoria, BC V8W 2Y2, Canada.

出版信息

Phys Med Biol. 2018 Mar 29;63(7):075014. doi: 10.1088/1361-6560/aab501.

Abstract

This study introduces the first 3D deformable dosimetry system based on x-ray computed tomography (CT) polymer gel dosimetry and establishes the setup reproducibility, deformation characteristics and dose response of the system. A N-isopropylacrylamide (NIPAM)-based gel formulation optimized for x-ray CT gel dosimetry was used, with a latex balloon serving as the deformable container and low-density polyethylene and polyvinyl alcohol providing additional oxygen barrier. Deformable gels were irradiated with a 6 MV calibration pattern to determine dosimetric response and a dosimetrically uniform plan to determine the spatial uniformity of the response. Wax beads were added to each gel as fiducial markers to track the deformation and setup of the gel dosimeters. From positions of the beads on CT images the setup reproducibility and the limits and reproducibility of gel deformation were determined. Comparison of gel measurements with Monte Carlo dose calculations found excellent dosimetric accuracy, comparable to that of an established non-deformable dosimetry system, with a mean dose discrepancy of 1.5% in the low-dose gradient region and a gamma pass rate of 97.9% using a 3%/3 mm criterion. The deformable dosimeter also showed good overall spatial dose uniformity throughout the dosimeter with some discrepancies within 20 mm of the edge of the container. Tracking of the beads within the dosimeter found that sub-millimetre setup accuracy is achievable with this system. The dosimeter was able to deform and relax when externally compressed by up to 30 mm without sustaining any permanent damage. Internal deformations in 3D produced average marker movements of up to 12 mm along the direction of compression. These deformations were also shown to be reproducible over 100 consecutive deformations. This work has established several important characteristics of a new deformable dosimetry system which shows promise for future clinical applications, including the validation of deformable dose accumulation algorithms.

摘要

本研究介绍了首个基于 X 射线计算机断层扫描(CT)聚合物凝胶剂量学的三维可变形剂量测定系统,并建立了该系统的设置可重复性、变形特征和剂量响应。使用了一种针对 X 射线 CT 凝胶剂量学进行了优化的 N-异丙基丙烯酰胺(NIPAM)基凝胶配方,乳胶气球作为可变形容器,低密度聚乙烯和聚乙烯醇提供额外的氧气屏障。使用 6 MV 校准图案对可变形凝胶进行照射,以确定剂量响应和剂量均匀的计划,以确定响应的空间均匀性。向每个凝胶中添加蜡珠作为基准标记,以跟踪凝胶剂量计的变形和设置。从 CT 图像上的珠位置确定了设置的可重复性以及凝胶变形的限制和可重复性。凝胶测量与蒙特卡罗剂量计算的比较发现,剂量学精度非常高,与成熟的不可变形剂量测定系统相当,在低剂量梯度区域的平均剂量差异为 1.5%,使用 3%/3mm 标准的伽马通过率为 97.9%。可变形剂量计在整个剂量计中也显示出良好的整体空间剂量均匀性,在容器边缘 20mm 内存在一些差异。在剂量计内对珠的跟踪发现,该系统可以实现亚毫米级的设置精度。该剂量计在外部压缩高达 30mm 时能够变形和放松,而不会造成任何永久性损坏。在 3D 中产生的内部变形导致标记物在压缩方向上平均移动高达 12mm。这些变形在 100 次连续变形中也表现出可重复性。这项工作确定了一种新的可变形剂量测定系统的几个重要特征,该系统显示出未来临床应用的前景,包括可变形剂量积累算法的验证。

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