首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Collagen fibril organization in chicken and porcine skeletal muscle perimysium under applied tension and compression
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Collagen fibril organization in chicken and porcine skeletal muscle perimysium under applied tension and compression

机译:鸡肉和猪骨骼肌肉概念的胶原蛋白原纤维组织在施加的张力和压缩下

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The tension/compression asymmetry observed in the stress-stretch response of skeletal muscle is not well understood. The collagen network in the extracellular matrix (ECM) almost certainly plays a major role, but the details are unknown. This paper reports qualitatively and quantitatively on skeletal muscle ECM reorganization during applied deformation using confocal imaging of collagen through use of a fluorescently-tagged specific collagen binding protein (CNA35-EGFP) of porcine and thicken muscle samples under tensile and compressive deformation in both the fibre and cross-fibre directions. This reveals the overall three-dimensional structure of collagen in perimysium in planes perpendicular and parallel to the muscle fibres in both species. Furthermore, there is clear evidence of the reorganization of these structures under compression and tension applied in both the muscle fibre and cross-fibre directions. These observations improve our understanding of perimysium structure and response to three-dimensional deformations and are an important basis for constitutive models of passive skeletal muscle. Although overall behaviour was similar, some differences in perimysium structure were observed between chicken and porcine muscle tissue. Further work is required to better understand which structures are responsible for the tension and compression stress-strain asymmetry previously observed in the mechanical response of passive skeletal muscle.
机译:在骨骼肌的应力拉伸响应中观察到的张力/压缩不对称性并不了解。细胞外基质(ECM)中的胶原蛋白网络几乎肯定发挥了重要作用,但细节是未知的。本文通过使用胶原蛋白的荧光标记的特异性胶原结合蛋白(CNA35-EGFP)在纤维下的拉伸和压缩变形下的荧光标记的特异性胶原结合蛋白(CNA35-EGFP),在施用变形期间对骨骼肌ECM重组进行定性和定量地报告骨骼肌ECM重组。在纤维中的拉伸和压缩变形下的增稠肌肉样品和十字形方向。这揭示了在垂直于两种物种中肌纤维的平面中胰岛素中胶原蛋白的整体三维结构。此外,在肌纤维和十字纤维方向上施加的压缩和张力下,有明显的证据证明这些结构的重组。这些观察结果改善了我们对概念结构的理解和对三维变形的反应,是被动骨骼肌的本构模型的重要依据。虽然整体行为相似,但在鸡肉和猪肌肉组织之间观察到逾越节结构的一些差异。需要进一步的工作来更好地理解哪种结构负责先前在被动骨骼肌的机械响应中观察到的张力和压缩应力 - 应变不对称性。

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