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Anatomically Realistic Three-Dimensional Meshes of the Pelvic Floor Anal Canal for Finite Element Analysis

机译:骨盆底解剖学逼真的三维网格和肛管进行有限元分析

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摘要

Three anatomically realistic meshes, suitable for finite element analysis, of the pelvic floor and anal canal regions have been developed to provide a framework with which to examine the mechanics, via finite element analysis of normal function within the pelvic floor. Two cadaver-based meshes were produced using the Visible Human Project (male and female) cryosection data sets, and a third mesh was produced based on MR image data from a live subject. The Visible Man (VM) mesh included 10 different pelvic structures while the Visible Woman and MRI meshes contained 14 and 13 structures respectively. Each image set was digitized and then finite element meshes were created using an iterative fitting procedure with smoothing constraints calculated from ‘L’-curves. These weights produced accurate geometric meshes of each pelvic structure with average Root Mean Square (RMS) fitting errors of less than 1.15 mm. The Visible Human cadaveric data provided high resolution images, however, the cadaveric meshes lacked the normal dynamic form of living tissue and suffered from artifacts related to postmortem changes. The lower resolution MRI mesh was able to accurately portray structure of the living subject and paves the way for dynamic, functional modeling.
机译:已经开发了三种适用于骨盆底和肛管区域的有限元分析的解剖学现实网格,以通过骨盆底内正常功能的有限元分析提供一个框架来检查力学。使用“可见的人类计划”(男性和女性)冰冻切片数据集生成了两个基于尸体的网格,并根据来自活体的MR图像数据生成了第三个网格。可见男人(VM)网格包含10个不同的骨盆结构,而可见女人和MRI网格分别包含14和13个结构。每个图像集都被数字化,然后使用迭代拟合程序创建有限元网格,并使用“ L”曲线计算出平滑约束。这些重量产生了每个骨盆结构的精确几何网格,平均均方根(RMS)拟合误差小于1.15 mm。可见的人体尸体数据提供了高分辨率的图像,但是,尸体网格缺少正常的活体组织动态形式,并且遭受了与尸体变化相关的伪像。较低分辨率的MRI网格能够准确地描绘出活着的对象的结构,并为动态功能建模铺平了道路。

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