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Anatomically Based Computational Models of the Male and Female Pelvic Floor and Anal Canal

机译:基于解剖学的男性和女性骨盆底和肛管计算模型

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The understanding of the pelvic floor and anal canal, in the study of incontinence, has been limited by the inability to integrate both anatomy and physiology into a unified bioengineering model. However, this integration has been achieved in the study of other organs in the body, most notably the heart. In this study we construct three-dimensional anatomically realistic models of both the male and female pelvic floor and anal canal regions using similar techniques to those used in cardiac modelling. Anatomical data from the Visible Human Project was used to provide the anatomical positioning of each model component within the region of interest. A C1 continuous cubic Hermite finite element mesh was then created using an iterative linear fitting procedure (root mean square (RMS) error of fit 2 mm). With this mesh we seek to examine the roles of the various muscles in maintaining continence. Our ultimate aim is to provide a framework with which to examine the mechanics of normal function and stability in the pelvic floor, and the abnormalities associated with the defecation disorders fecal incontinence and obstructed defecation, thereby providing a tool to further the education of clinicians, patients, and students and enabling virtual planning of corrective surgery
机译:在尿失禁研究中对骨盆楼和肛管的理解受到无法无法将解剖和生理学集成为统一的生物工程模型。然而,在体内的其他器官的研究中已经实现了这种融合,最有意义的是心脏。在这项研究中,我们用与心脏建模中使用的那些构建男性和女性骨盆地板和肛管区域的三维解剖学现实模型。来自可见人体项目的解剖数据用于在感兴趣区域内提供每个模型组分的解剖定位。然后使用迭代线性拟合程序(配合<2mm的根均线(RMS)误差)产生C连续立方Hermite有限元网。通过这种网格,我们寻求检查各种肌肉在维持洲的角色。我们的终极目标是提供一种框架,用于检查骨盆底的正常功能和稳定性的机制,以及与排便疾病的异常相关,与粪便尿失禁和障碍排便相关,从而提供临床医生教育的工具,患者和学生和能够实现矫正手术的虚拟规划

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