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The effects of variations in the density and composition of eye materials on ophthalmic brachytherapy dosimetry

机译:眼材料密度和成分变化对眼近距离放射治疗剂量学的影响

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摘要

In ophthalmic brachytherapy dosimetry, it is common to consider the water phantom as human eye anatomy. However, for better clinical analysis, there is a need for the dose determination in different parts of the eye. In this work, a full human eye is simulated with MCNP-4C code by considering all parts of the eye, i.e., the lens, cornea, retina, choroid, sclera, anterior chamber, optic nerve, and bulk of the eye comprising vitreous body and tumor. The average dose in different parts of this full model of the human eye is determined and the results are compared with the dose calculated in water phantom. The central axes depth dose and the dose in whole of the tumor for these 2 simulated eye models are calculated as well, and the results are compared.
机译:在眼科近距离放射治疗剂量法中,通常将水体模视为人眼的解剖结构。然而,为了更好的临床分析,需要确定眼睛不同部位的剂量。在这项工作中,通过考虑眼睛的所有部分(即晶状体,角膜,视网膜,脉络膜,巩膜,前房,视神经和包括玻璃体的眼睛的整个部分),使用MCNP-4C代码模拟完整的人眼和肿瘤。确定人眼完整模型不同部分的平均剂量,并将结果与​​在水模中计算出的剂量进行比较。还计算了这两个模拟眼模型的中心轴深度剂量和整个肿瘤的剂量,并比较了结果。

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