雷氏膜的扩张性:一种比较分析

D. J. Pender
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引用次数: 0

摘要

背景内淋巴积液中雷氏膜的扩张是梅尼埃病的典型耳病理表现。最近的一项双重打击分析提出了一种可能性,即雷氏膜的膨胀性行为的可变性可能导致这种疾病中遇到的膜病理的变化。这种膨胀性变异性被怀疑源于赖斯纳基底膜中IV型胶原的粘弹塑性行为。目的分析雷氏膜已知的膨胀性特征,为其粘弹塑性行为提供依据。方法对人雷氏膜现有资料进行膨胀性分析。然后将这些特征与已知的粘弹塑性特征进行比较,这些特性一般表现为聚合物以及各种胶原组织。这些组织包括合成的胶原蛋白膜以及选定的哺乳动物组织。结果现有有限的人体Reissner膜的膨胀行为数据显示,在较低应变速率为0.47%/秒时,Reissner膜表现为s形载荷变形,而在较高应变速率为5.5%/秒时,Reissner膜表现为刚性破裂模式。这些特征被发现与聚合物粘弹性的一般特征相似,即在较低应变速率下的s形载荷变形模式,随着应变速率的增加而变硬和变直。合成胶原膜和选定的哺乳动物组织的张力测量数据显示出类似的载荷变形模式。这些发现支持了人类雷氏膜以粘弹塑性方式行为的结论。结论:与其他胶原组织相比,人雷氏膜表现出粘弹塑性行为。这种可变的扩张行为为解释为什么梅尼埃氏病破裂前病变的扩张程度可能取决于膜负荷的动态变化和由此产生的膜应变速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Distensibility of Reissner’s Membrane: A Comparative Analysis
Abstract Background Distention of Reissner’s membrane in endolymphatic hydrops is a classical otopathologic finding in cases of Meniere’s disease. A recent double hit analysis raised the possibility that the variability in the distensile behavior in Reissner’s membrane may contribute to the vagaries of membrane pathology encountered in this disease. Such distensile variability is suspected to stem from the viscoelastoplastic behavior of the type IV collagen in Reissner’s basement membrane. Objective To analyze the known distensile characteristics of Reissner’s membrane for evidence of viscoelastoplastic behavior. Methods Extant data on human Reissner’s membrane were analyzed for distensile characteristics. These features were then compared to the known characteristics of viscoelastoplasticity as manifested by polymers in general as well as a variety of collagenous tissues. These tissues included a synthetic collagen membrane as well as selected mammalian tissues. Results The limited extant data on human Reissner’s membrane distensile behavior was found to manifest sigmoid load deformation at a lower strain rate of 0.47%/sec and a rigid rupture pattern at a 10-fold higher strain rate of 5.5%/sec. These characteristics were found to be similar to the general characteristics of polymer viscoelasticity, namely a sigmoid load deformation pattern at lower strain rate that stiffens and straightens as strain rate increases. Tensometric data from a synthetic collagen membrane and selected mammalian tissues were found to exhibit comparable load deformation patterns. These findings support the conclusion that human Reissner’s membrane behaves in a viscoelastoplastic manner. Conclusions Human Reissner’s membrane appears to exhibit viscoelastoplastic behavior comparable to that observed in other collagenous tissues. Such variable distensile behavior provides insight into why the degree of lesion distention before rupture in Meniere’s disease might vary depending on the dynamics of membrane loading and the resultant rate of membrane strain.
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