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首页> 外文期刊>The Journal of Experimental Biology >Collagen orientation and molecular spacing during creep and stress-relaxation in soft connective tissues
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Collagen orientation and molecular spacing during creep and stress-relaxation in soft connective tissues

机译:软结缔组织蠕变和应力松弛过程中的胶原蛋白取向和分子间距

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摘要

Collagen fibres form cross-helical, cross-ply or quasirandom feltworks in extensible connective tissues; strain-induced reorientation of these networks gives rise to the nonlinear mechanical properties of connective tissue at finite strains. Such tissues are also generally viscoelastic (i.e. display time-dependent properties). The hypothesis that time-dependent reorientation of collagen fibres is responsible for the viscoelasticity of such tissues is examined here using time-resolved X-ray diffraction measurements during stress-relaxation and creep transients applied to rat skin and bovine intramuscular connective tissue. Differences in the intensity and angular orientation of the third and fifth orders of the 67 nm meridional D-spacing of collagen molecules were shown before and after the application of loads or displacements. However, no changes in the D-spacing or angular orientation of collagen occurred during the time course of either stress-relaxation or creep in both tissues. This indicates that collagen fibre reorientation is not a primary source of their viscoelastic properties. The nonlinear (strain-dependent) nature of the stress-relaxation response in these tissues suggests that relaxation processes within the collagen fibres or at the fibre-matrix interface may be responsible for their viscoelastic nature. [References: 18]
机译:胶原纤维在可扩展的结缔组织中形成交叉螺旋,交叉铺层或准随机的毡制品。这些网络的应变诱导重新定向会导致结缔组织在有限应变下的非线性力学性能。这样的组织通常也是粘弹性的(即,显示出随时间变化的特性)。在此,使用应力松弛和施加于大鼠皮肤和牛肌肉内结缔组织的蠕变瞬变期间的时间分辨X射线衍射测量,检验了胶原纤维的时间依赖性重新定向导致此类组织的粘弹性的假设。在施加载荷或位移之前和之后,显示了胶原分子67 nm子午线D间距的三阶和五阶的强度和角度方向的差异。但是,在两个组织中应力松弛或蠕变的时间过程中,胶原蛋白的D间距或角取向均未发生变化。这表明胶原纤维的重新定向不是其粘弹性的主要来源。这些组织中应力松弛反应的非线性(取决于应变)性质表明,胶原纤维内或纤维-基质界面处的松弛过程可能是其粘弹性的原因。 [参考:18]

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