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应变诱导的肌内结缔组织网络重定向:对被动肌肉弹性的影响

Strain-induced reorientation of an intramuscular connective tissue network: implications for passive muscle elasticity.

作者信息

Purslow P P

机构信息

Muscle Biology Department, AFRC Institute of Food Research, Bristol Laboratory, Langford, U.K.

出版信息

J Biomech. 1989;22(1):21-31. doi: 10.1016/0021-9290(89)90181-4.

Abstract

The most abundant intramuscular connective tissue component, the perimysium, of bovine M. sternomandibularis muscle was shown to be a crossed-ply arrangement of crimped collagen fibres which reorientate and decrimp on changing muscle fibre sarcomere length. Reorientation of perimysial strands was observed by light microscopy and identification of these strands as collagen fibres was confirmed by high-angle X-ray diffraction. Mean collagen fibre direction with respect to the muscle fibres ranged from approximately 80 degrees at sarcomere length = 1.1 micron to approximately 20 degrees at 3.9 microns. This behaviour was well described by a model of a crimped planar network surrounding a muscle fibre bundle of constant volume but varying length. Modelling of the mechanical properties of the perimysium at different sarcomere lengths produced a load-sarcomere length curve which was in good agreement with the passive elastic properties of the muscle, especially at long sarcomere lengths. It is concluded that the role of the perimysial collagen network is to prevent over-stretching of the muscle fibre bundles.

摘要

研究表明,牛胸骨下颌肌中最丰富的肌内结缔组织成分——肌束膜,是由卷曲的胶原纤维呈交叉层状排列构成,这些纤维在肌纤维肌节长度改变时会重新定向并展开。通过光学显微镜观察到了肌束膜束的重新定向,高角度X射线衍射证实这些束为胶原纤维。相对于肌纤维,胶原纤维的平均方向在肌节长度为1.1微米时约为80度,在3.9微米时约为20度。这种行为可以用一个围绕恒定体积但长度可变的肌纤维束的卷曲平面网络模型很好地描述。对不同肌节长度下肌束膜力学性能的建模产生了一条负荷-肌节长度曲线,该曲线与肌肉的被动弹性特性高度吻合,尤其是在长肌节长度时。得出的结论是,肌束膜胶原网络的作用是防止肌纤维束过度拉伸。

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