Physical contributors to dose in patients with dual-port temporary tissue expanders treated post-mastectomy with 10 MV x-rays: a Monte Carlo study.

IF 1.3 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Ramon Ortiz, Bruce Faddegon, Manju Sharma, José Ramos-Méndez
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引用次数: 0

Abstract

Objective. To evaluate how radiation interactions, influenced by a dual-port temporary tissue expander (TTE), impact dosimetry in post-mastectomy radiotherapy (PMRT) with 10 MV x-rays.Approach. The individual dose contributions from the radiation interaction processes within the patient, specifically the photoelectric effect, pair production, bremsstrahlung, and neutrons, were evaluated in a PMRT treatment involving the dual-port AlloX2 TTE using Monte Carlo simulations. The plan setup was two 10 MV tangential half-beam-blocked fields (40 Gy in fifteen fractions). Individual contributions of the different physical processes were computed using a dedicated physics list that allows to activate/deactivate each process. The yield of photoneutrons produced in TTE neodymium ports (ρ = 7.4 g/cm3) and their impact on equivalent neutron dose were computed using previously validated physics modules. The effect of the presence of the TTE was estimated by comparing results in plans with and without the TTE.Results. The presence of the TTE reduced the dose to the breast skin distal to the ports up to 19.3% of the prescribed dose. The contribution of the photoelectric effect and bremsstrahlung was confined to the metallic ports, accounting for 9% and 1% of the total dose. Pair production accounted for 20% of the dose deposited within the ports and contributed 2.2 Gy and 0.9 Gy to the maximum dose to the lung and heart, respectively. We found that no photoneutron was produced in the TTE, not having an effect on the equivalent neutron dose to the patient.Significance. This work extended the current knowledge on the impact of TTE on dose distributions, including neutron contamination, in PMRT treatments.

双孔临时组织扩张器在乳房切除术后用10mv x射线治疗的物理影响剂量:一项蒙特卡洛研究。
目标。评估双口临时组织扩张器(TTE)对乳房切除术后10 MV x射线放射治疗(PMRT)中辐射相互作用的影响。采用蒙特卡罗模拟方法评估了患者体内辐射相互作用过程的个体剂量贡献,特别是光电效应、对产生、轫致辐射和中子,并对双端口AlloX2 TTE进行了PMRT治疗。计划设置为两个10 MV切向半束流阻挡场(15个分数40 Gy)。不同物理过程的单独贡献是使用一个专用的物理列表来计算的,该列表允许激活/停用每个过程。使用先前验证的物理模块计算了TTE钕端口(ρ = 7.4 g/cm3)产生的光子中子的产率及其对等效中子剂量的影响。通过比较有和没有有TTE的计划的结果来估计TTE存在的效果。TTE的存在减少了对端口远端乳房皮肤的剂量,达到规定剂量的19.3%。光电效应和轫致辐射的贡献仅局限于金属端,分别占总剂量的9%和1%。配对产生占端口内沉积剂量的20%,对肺和心脏的最大剂量分别贡献2.2 Gy和0.9 Gy。我们发现在TTE中没有产生光子中子,对病人的等效中子剂量没有影响。这项工作扩展了目前关于TTE对PMRT治疗中剂量分布(包括中子污染)影响的知识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomedical Physics & Engineering Express
Biomedical Physics & Engineering Express RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
2.80
自引率
0.00%
发文量
153
期刊介绍: BPEX is an inclusive, international, multidisciplinary journal devoted to publishing new research on any application of physics and/or engineering in medicine and/or biology. Characterized by a broad geographical coverage and a fast-track peer-review process, relevant topics include all aspects of biophysics, medical physics and biomedical engineering. Papers that are almost entirely clinical or biological in their focus are not suitable. The journal has an emphasis on publishing interdisciplinary work and bringing research fields together, encompassing experimental, theoretical and computational work.
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