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首页> 外文期刊>Annals of the New York Academy of Sciences >A Three-Dimensional Model of the Penis for Analysis of Tissue Stresses during Normal and Abnormal Erection
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A Three-Dimensional Model of the Penis for Analysis of Tissue Stresses during Normal and Abnormal Erection

机译:阴茎的三维模型,用于分析正常和异常勃起期间的组织应力

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摘要

Approximately half of the males between the ages of 40 and 70 suffer erectile dysfunction. Because adequate mechanical interactions in the penis are necessary for functional erection it is important to analyze stresses in the erect penis. Previous penis models were limited to simplified or two-dimensional geometry. Here we developed a three-dimensional model for structural analysis of normal erection as well as erections of a penis with substantial asymmetry of the corporal bodies, and Peyronie's disease. The model was constructed based on anatomical images and included skin, tunica albuginea, corpus cavernosa, and spongiosum. The mechanical behavior of the tunica and skin were assumed to be three-dimensional-orthotropic, and other tissues as well as Peyronie's plaque was taken as linear elastic. Stresses and deformations during erection were analyzed using a commercial finite elements (FE) solver. Erection was simulated by raising blood pressure in the corporal bodies to 100 mmHg. The tunica was found to be the most highly loaded tissue in the erect penis. Peak von Mises stresses in the healthy tunica, tunica of the asymmetric corpora model, and tunica with Peyronie's disease were 114 kPa, 167 kPa, and 830 kPa, respectively. The angles of distortion of the penis with respect to the vertical axis were ~4.5° and ~2°, for the asymmetric and Peyronie's cases, respectively. The model's ability to determine internal stresses in the erect penis offers a new point of view on the mechanical factors involved with erection, and enables us to relate these data with different penile pathologies.
机译:40至70岁之间的男性约有一半患有勃起功能障碍。由于在阴茎中进行充分的机械相互作用对于功能性勃起是必需的,因此分析勃起的阴茎中的压力非常重要。以前的阴茎模型仅限于简化或二维几何形状。在这里,我们开发了一个三维模型,用于正常勃起以及阴茎勃起的结构分析,而阴茎勃起的躯体和佩罗尼氏病基本不对称。该模型是基于解剖图像构建的,包括皮肤,白膜,海绵体和海绵体。假定外衣和皮肤的力学行为是三维正交各向异性的,而其他组织以及佩罗尼斑则被视为线性弹性。使用商用有限元(FE)求解器分析了安装过程中的应力和变形。通过将体内的血压升高至100 mmHg来模拟勃起。发现外膜是勃起的阴茎中负荷最高的组织。健康的被膜,非对称体模型的被膜和患有佩罗尼氏病的被膜的von Mises峰值应力分别为114 kPa,167 kPa和830 kPa。对于非对称病例和佩罗尼病例,阴茎相对于垂直轴的变形角度分别为〜4.5°和〜2°。该模型确定勃起阴茎内应力的能力为勃起涉及的机械因素提供了新的观点,并使我们能够将这些数据与不同的阴茎病理联系起来。

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