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瓦里安通用多通道圆柱系统用于高剂量率铱近距离放射治疗的剂量学研究。

Dosimetric study of Varian Universal Multi-Channel Cylinder System for High-Dose-Rate Ir Brachytherapy.

机构信息

Department of Therapeutic Radiology, Yale University School of Medicine, New Haven, CT.

Department of Therapeutic Radiology, Yale University School of Medicine, New Haven, CT.

出版信息

Brachytherapy. 2022 Mar-Apr;21(2):244-254. doi: 10.1016/j.brachy.2021.11.001. Epub 2022 Jan 4.

Abstract

PURPOSE

Recently, the Varian multichannel vaginal cylinder (MCVC) set for high-dose-rate Ir brachytherapy was commercially released. This MCVC was distinct from our existing MCVC in its peripheral channel layout and tip design. This investigation sought to assess the dosimetric impact of these changes.

METHODS AND MATERIALS

The dimensions of the virtual model for each applicator were compared against both physical and radiographic measurements. Volumetric dose distributions were generated in silico using a model-based dose calculation algorithm (MBDCA). To characterize the effects of the new peripheral channel layout on dose to adjacent areas ("dose-spill"), point doses were compared using two sets of applicator-based reference points: at surface or 5 mm radially from surface. To evaluate the dose-shaping capabilities, a dose distribution was generated for the new applicator and assessed against a representative dose distribution for a patient previously treated with existing equipment.

RESULTS

Based on both physical and radiographic measurements, virtual models were representative of each applicator within ±1 mm. Commissioning of the MBDCA was benchmarked based on AAPM Working Group on Dose Calculation Algorithms in Brachytherapy. The layout of the new applicator reduced dose-spill to other reference points significantly, as much as a factor of 16.3, compared with the existing equipment. The rounded tip shape and curve of the peripheral channels in the new applicator produced more conformity to its HR-CTV than existing equipment.

CONCLUSIONS

Compared with our existing equipment, the design changes in the new Varian MCVC set offered improved control of dose spill and better conformality to HR-CTV.

摘要

目的

最近,瓦里安(Varian)公司推出了用于高剂量率铱近距离治疗的多通道阴道圆柱(MCVC)套件。该 MCVC 在其外周通道布局和尖端设计上与我们现有的 MCVC 有所不同。本研究旨在评估这些变化对剂量学的影响。

方法和材料

对每个施源器的虚拟模型尺寸进行了比较,包括与物理和放射学测量结果的比较。使用基于模型的剂量计算算法(MBDCA)在计算机上生成容积剂量分布。为了描述新的外周通道布局对相邻区域剂量(剂量溢出)的影响,使用两套基于施源器的参考点(表面或表面 5mm 处)比较了点剂量。为了评估剂量成型能力,为新施源器生成了剂量分布,并与之前使用现有设备治疗的患者的代表性剂量分布进行了评估。

结果

基于物理和放射学测量,虚拟模型在±1mm 内代表了每个施源器。MBDCA 的调试是基于 AAPM 工作组在近距离治疗中的剂量计算算法进行的基准测试。与现有设备相比,新施源器的布局显著降低了对其他参考点的剂量溢出,最大可达 16.3 倍。新施源器的尖端形状和外周通道的曲线使其与 HR-CTV 的贴合度更好。

结论

与我们现有的设备相比,新瓦里安 MCVC 套件的设计变化提供了更好的剂量溢出控制和更好的 HR-CTV 贴合度。

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