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佩罗尼氏病的生物力学模型。

A biomechanical model of Peyronie's disease.

作者信息

Gefen A, Chen J, Elad D

机构信息

Department of Biomedical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

J Biomech. 2000 Dec;33(12):1739-44. doi: 10.1016/s0021-9290(00)00122-6.

Abstract

Peyronie's disease is a pathological condition of the penis which is characterized by localized ossification of the tunica albuginea. A common symptom of the chronic stage is penile deformity during erection, which is frequently associated with pain and erectile dysfunction. A two-dimensional biomechanical model of the penis was applied to study the development of Peyronie's disease by simulating the mechanical stress distribution which would result from the interaction of the ossified tunical tissue with other penile soft tissues. The model was solved by using commercial finite element software for a characteristic erectile pressure. The results demonstrate that Peyronie's plaques may induce intensified stresses around the penile nerves and blood vessels, up to double those in the normal penis. These elevated stresses may cause a painful sensation of neural origin or ischemia in regions of compressed vascular tissue. Severe penile deformities have been shown to develop if Peyronie's plaques develop only around one of the corpora cavernosa due to the non-homogeneous resistance of the tunica to expansion during erection. The present model can be clinically applied as an aid in the planning process of reconstructive surgery or insertion of a prosthesis.

摘要

佩罗尼氏病是阴茎的一种病理状况,其特征为白膜局部骨化。慢性期的常见症状是勃起时阴茎畸形,常伴有疼痛和勃起功能障碍。应用阴茎的二维生物力学模型,通过模拟骨化的白膜组织与阴茎其他软组织相互作用所产生的机械应力分布,来研究佩罗尼氏病的发展。使用商业有限元软件针对特征性勃起压力求解该模型。结果表明,佩罗尼氏斑块可能会在阴茎神经和血管周围诱发增强的应力,高达正常阴茎应力的两倍。这些升高的应力可能会在受压血管组织区域引起神经源性疼痛或缺血。如果由于白膜在勃起过程中对扩张的阻力不均一,佩罗尼氏斑块仅在一个海绵体周围形成,已表明会出现严重的阴茎畸形。本模型可在临床上用于辅助重建手术或假体植入的规划过程。

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