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Biomechanical Modeling of the Rectum for the Design of a Novel Artificial Anal Sphincter

机译:直肠的生物力学建模,用于设计新型人工肛门括约肌

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This paper discusses biomechanical issues that are related to the option of a novel artificial anal sphincter around the human rectum. The prosthesis consists of a compression cuff system inside and a reservoir cuff system outside, which is placed around the debilitated sphincter muscle. The micro-pump shifts fluid between the cuffs and thus takes over the expansion and compression function of the sphincter muscle. However, the human rectum is not a rigid pipe, and motion in it is further complicated by the fact that the bowel is susceptible to damage. With the goal of engineering a safe and reliable machine, the biomechanical properties of the in-vivo porcine rectum are studied and the tissue ischemia is analyzed.
机译:本文讨论了与新的人工肛门括约肌在人类直肠周围的选择有关的生物力学问题。假体由内侧的压缩袖套系统和外侧的储液囊套系统组成,该系统放置在衰弱的括约肌周围。微型泵使袖带之间的流体移位,从而接管括约肌的扩张和压缩功能。然而,人的直肠不是刚性的管,并且由于肠容易受到损害的事实而使其中的运动进一步复杂化。以设计安全可靠的机器为目标,研究了猪体内直肠的生物力学特性并分析了组织缺血。

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