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微原纤维在美洲螯龙虾的腹动脉中呈现出非线性弹性行为。

Microfibrils provide non-linear elastic behaviour in the abdominal artery of the lobster Homarus americanus.

作者信息

McConnell C J, DeMont M E, Wright G M

机构信息

Biology Department, St Francis Xavier University, Antigonish, Nova Scotia, Canada.

出版信息

J Physiol. 1997 Mar 1;499 ( Pt 2)(Pt 2):513-26. doi: 10.1113/jphysiol.1997.sp021945.

Abstract
  1. Microfibrils are becoming increasingly recognized as an important component of the extra-cellular matrix. However, almost nothing is known about their mechanical role in the diversity of tissues in which they are found. 2. Microfibrils form the principal structural component in the wall of the abdominal artery of the lobster Homarus americanus. We have used previous estimates of the mechanical properties of these microfibrils, estimates of the fraction of the aorta wall volume occupied by the microfibrils, and their angular distribution as a function of strain in a numerical model that predicts the macroscopic mechanical properties of the whole tissue. 3. Microfibrils alone, when their reorientation and deformation are accounted for, characterize the stress-strain behaviour of the vessel. Evidence of the evolutionary conservation of fibrillin between medusans, echinoderms and vertebrates implies that the mechanical properties of lobster microfibrils may apply to microfibrillar function in other taxa. This will have profound implications on the perceived roles of microfibrils in development, physiology and disease.
摘要
  1. 微原纤维越来越被认为是细胞外基质的重要组成部分。然而,对于它们在所发现的各种组织中的力学作用,人们几乎一无所知。2. 微原纤维构成了美洲螯龙虾腹部动脉壁的主要结构成分。我们利用先前对这些微原纤维力学性能的估计、微原纤维在主动脉壁体积中所占比例的估计,以及它们在一个预测整个组织宏观力学性能的数值模型中作为应变函数的角分布。3. 仅微原纤维在考虑其重新定向和变形时,就能表征血管的应力应变行为。水母、棘皮动物和脊椎动物之间原纤维蛋白进化保守性的证据表明,龙虾微原纤维的力学性能可能适用于其他类群中的微原纤维功能。这将对微原纤维在发育、生理学和疾病中所起的作用产生深远影响。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46bc/1159323/90e4f7cb396f/jphysiol00283-0223-a.jpg

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