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SU-E-T-481:质子治疗中组织异质性的剂量学效应:使用动物组织模型的蒙特卡罗模拟与实验研究

SU-E-T-481: Dosimetric Effects of Tissue Heterogeneity in Proton Therapy: Monte Carlo Simulation and Experimental Study Using Animal Tissue Phantoms.

作者信息

Liu Y, Zheng Y

机构信息

INTEGRIS Cancer Institute of Oklahoma, Protom Campus, Oklahoma City, OK.

ProCure Treatment Centers, Oklahoma City, OK.

出版信息

Med Phys. 2012 Jun;39(6Part17):3815-3816. doi: 10.1118/1.4735570.

Abstract

PURPOSE

Accurate determination of proton dosimetric effect for tissue heterogeneity is critical in proton therapy. Proton beams have finite range and consequently tissue heterogeneity plays a more critical role in proton therapy. The purpose of this study is to investigate the tissue heterogeneity effect in proton dosimetry based on anatomical-based Monte Carlo simulation using animal tissues.

METHODS

Animal tissues including a pig head and beef bulk were used in this study. Both pig head and beef were scanned using a GE CT scanner with 1.25 mm slice thickness. A treatment plan was created, using the CMS XiO treatment planning system (TPS) with a single proton spread-out-Bragg-peak beam (SOBP). Radiochromic films were placed at the distal falloff region. Image guidance was used to align the phantom before proton beams were delivered according to the treatment plan. The same two CT sets were converted to Monte Carlo simulation model. The Monte Carlo simulated dose calculations with/without tissue omposition were compared to TPS calculations and measurements.

RESULTS

Based on the preliminary comparison, at the center of SOBP plane, the Monte Carlo simulation dose without tissue composition agreed generally well with TPS calculation. In the distal falloff region, the dose difference was large, and about 2 mm isodose line shift was observed with the consideration of tissue composition. The detailed comparison of dose distributions between Monte Carlo simulation, TPS calculations and measurements is underway.

CONCLUSIONS

Accurate proton dose calculations are challenging in proton treatment planning for heterogeneous tissues. Tissue heterogeneity and tissue composition may lead to isodose line shifts up to a few millimeters in the distal falloff region. By simulating detailed particle transport and energy deposition, Monte Carlo simulations provide a verification method in proton dose calculation where inhomogeneous tissues are present.

摘要

目的

准确确定质子束对组织异质性的剂量效应在质子治疗中至关重要。质子束射程有限,因此组织异质性在质子治疗中发挥着更为关键的作用。本研究的目的是基于使用动物组织的基于解剖结构的蒙特卡罗模拟,研究质子剂量学中的组织异质性效应。

方法

本研究使用了包括猪头和牛肉块在内的动物组织。猪头和牛肉均使用GE CT扫描仪进行扫描,层厚为1.25毫米。使用CMS XiO治疗计划系统(TPS)创建了一个治疗计划,采用单质子扩展布拉格峰束(SOBP)。将放射变色胶片放置在远端剂量跌落区域。在根据治疗计划输送质子束之前,使用图像引导来对齐体模。将相同的两组CT数据转换为蒙特卡罗模拟模型。将有/无组织成分的蒙特卡罗模拟剂量计算结果与TPS计算结果和测量结果进行比较。

结果

基于初步比较,在SOBP平面中心,无组织成分的蒙特卡罗模拟剂量与TPS计算结果总体吻合良好。在远端剂量跌落区域,剂量差异较大,考虑组织成分时观察到约2毫米的等剂量线偏移。蒙特卡罗模拟、TPS计算和测量之间的剂量分布详细比较正在进行中。

结论

在异质组织的质子治疗计划中,准确的质子剂量计算具有挑战性。组织异质性和组织成分可能导致远端剂量跌落区域的等剂量线偏移达几毫米。通过模拟详细的粒子传输和能量沉积,蒙特卡罗模拟为存在不均匀组织的质子剂量计算提供了一种验证方法。

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