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New small-intestine modeling method for surface-based computational human phantoms

机译:基于表面的计算人体模型的新小肠建模方法

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摘要

When converting voxel phantoms to a surface format, the small intestine ( SI), which is usually not accurately represented in a voxel phantom due to its complex and irregular shape on one hand and the limited voxel resolutions on the other, cannot be directly converted to a high-quality surface model. Currently, stylized pipe models are used instead, but they are strongly influenced by developer's subjectivity, resulting in unacceptable geometric and dosimetric inconsistencies. In this paper, we propose a new method for the construction of SI models based on the Monte Carlo approach. In the present study, the proposed method was tested by constructing the SI model for the polygon-mesh version of the ICRP reference male phantom currently under development. We believe that the new SI model is anatomically more realistic than the stylized SI models. Furthermore, our simulation results show that the new SI model, for both external and internal photon exposures, leads to dose values that are more similar to those of the original ICRP male voxel phantom than does the previously constructed stylized SI model.
机译:将体素体模转换为表面格式时,由于一方面形状复杂且不规则,另一方面体素分辨率有限,通常无法在体素体模中正确表示的小肠(SI)无法直接转换为高质量的表面模型。当前,使用了程式化的管道模型来代替,但是它们受到开发商的主观性的强烈影响,导致几何和剂量学上的不一致。在本文中,我们提出了一种基于蒙特卡洛方法构建SI模型的新方法。在本研究中,通过为目前正在开发的ICRP参考男性体模的多边形网版构建SI模型,对所提出的方法进行了测试。我们认为,新的SI模型在解剖学上比风格化的SI模型更为现实。此外,我们的模拟结果表明,对于外部和内部光子曝光,新的SI模型所产生的剂量值与先前构建的程式化SI模型相比,与原始ICRP男性体素体模的剂量值更加相似。

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