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The influence of mammographic X-ray spectra on absorbed energy distribution in breast: Monte Carlo simulation studies

机译:乳腺X线摄影光谱对乳房吸收能量分布的影响:蒙特卡洛模拟研究

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摘要

A mathematical model, based on Monte Carlo simulation, is proposed for deriving absorbed energy and dose distribution in mammography utilizing a mathematical water-like phantom. The model was validated for its accuracy against experimental and published data. The main factor discriminating absorbed energy distribution characteristics among different mammographic techniques was considered the X-ray spectrum. The absorbed energy distribution inside the phantom was investigated via percentage depth dose and isodose curves. The influence of the factors affecting X-ray spectrum (tube voltage, anode material, filter material and thickness) on absorbed energy distribution was examined. The hardness of the beam, due to increase of tube voltage or filtration, was found to be the major factor affecting absorbed energy distribution inside the phantom. In general, Mo and W anode systems demonstrated superior dosimetric characteristics against those of W-Mo or Rh. The model presented can be used for estimating absolute and relative breast dose values and their spatial distributions. (C) 2004 Elsevier Ltd. All rights reserved.
机译:提出了一种基于蒙特卡洛模拟的数学模型,用于利用数学类水体模推导乳腺摄影中的吸收能量和剂量分布。该模型针对实验数据和公开数据进行了验证。区分不同乳腺摄影技术之间吸收能量分布特征的主要因素被认为是X射线光谱。通过百分比深度剂量和等剂量线研究了幻影内部的吸收能量分布。研究了影响X射线光谱的因素(管电压,阳极材料,过滤材料和厚度)对吸收的能量分布的影响。由于增加管电压或过滤,光束的硬度被发现是影响人体模型内部吸收能量分布的主要因素。通常,Mo和W阳极系统显示出优于W-Mo或Rh的剂量学特性。提出的模型可用于估计绝对和相对乳房剂量值及其空间分布。 (C)2004 Elsevier Ltd.保留所有权利。

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