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首页> 外文期刊>International journal for numerical methods in biomedical engineering >Biomechanical analysis of the interaction phenomena between artificial urinary sphincter and urethral duct
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Biomechanical analysis of the interaction phenomena between artificial urinary sphincter and urethral duct

机译:人工尿道括约肌与尿道导管相互作用现象的生物力学分析

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摘要

Male urinary incontinence is a widespread healthcare problem, leading to a miserable quality of life. Artificial urinary sphincter (AUS) is a device inserted mostly around the urethra in adult males, which mimics the urinary sphincter by providing a closure during urinary storage and a subsequent open to permit voiding. The interaction phenomena occurring between AUS cuff and urethral duct represent a fundamental problem in the investigation of AUS reliability and durability. In this work, computational methods are exploited to deeply investigate the mechanics of interaction phenomena occurring between urethral duct and AUS device. Experimental studies are performed on urethral tissues, and structural tests are carried out on the overall urethral duct to obtain a large set of information required for mechanical properties definition. The mechanical behavior of AUS cuff is investigated using mechanical and physicochemical procedures. The cuff conformation is acquired by computed tomography techniques for the definition of the numerical model. Numerical analyses are developed to evaluate the mechanical response of urethral duct in interaction with AUS cuff, considering the lumen occlusion process for maintaining urinary continence. Finally, the investigation of the compressive stress and strain fields within urethral tissues allows the identification of device performance and reliability in correlation with surgical practice.
机译:男性尿失禁是一个普遍存在的医疗保健问题,导致生活质量低下。人工尿道括约肌(AUS)是一种成年男性,大多插入尿道周围的装置,它通过在尿液储存过程中提供一个封闭装置并随后打开以允许排尿来模仿尿道括约肌。 AUS袖带与尿道导管之间发生的相互作用现象是研究AUS可靠性和耐用性的一个基本问题。在这项工作中,利用计算方法来深入研究尿道与AUS装置之间相互作用现象的机理。在尿道组织上进行了实验研究,并对整个尿道进行了结构测试,以获得机械性能定义所需的大量信息。使用机械和物理化学方法研究AUS袖带的机械行为。通过计算机断层摄影技术获得袖带构型,以定义数值模型。考虑到维持尿失禁的管腔闭塞过程,进行了数值分析以评估与AUS袖套相互作用时尿道的机械反应。最后,对尿道组织内压应力和应变场的研究可以确定与外科手术相关的器械性能和可靠性。

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