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被动骨骼肌组织在大拉伸应变下的各向异性力学行为。

The anisotropic mechanical behaviour of passive skeletal muscle tissue subjected to large tensile strain.

机构信息

Centre for Bioengineering, School of Engineering, Parsons Building, Trinity College, Dublin 2, Ireland.

出版信息

J Mech Behav Biomed Mater. 2013 Jan;17:209-20. doi: 10.1016/j.jmbbm.2012.09.001. Epub 2012 Sep 18.

Abstract

The passive mechanical properties of muscle tissue are important for many biomechanics applications. However, significant gaps remain in our understanding of the three-dimensional tensile response of passive skeletal muscle tissue to applied loading. In particular, the nature of the anisotropy remains unclear and the response to loading at intermediate fibre directions and the Poisson's ratios in tension have not been reported. Accordingly, tensile tests were performed along and perpendicular to the muscle fibre direction as well as at 30°, 45° and 60° to the muscle fibre direction in samples of Longissimus dorsi muscle taken from freshly slaughtered pigs. Strain was measured using an optical non-contact method. The results show the transverse or cross fibre (TT') direction is broadly linear and is the stiffest (77 kPa stress at a stretch of 1.1), but that failure occurs at low stretches (approximately λ=1.15). In contrast the longitudinal or fibre direction (L) is nonlinear and much less stiff (10 kPa stress at a stretch of 1.1) but failure occurs at higher stretches (approximatelyλ=1.65). An almost sinusoidal variation in stress response was observed at intermediate angles. The following Poisson's ratios were measured: VLT=VLT'=0.47, VTT'=0.28 and VTL=0.74. These observations have not been previously reported and they contribute significantly to our understanding of the three dimensional deformation response of skeletal muscle tissue.

摘要

肌肉组织的被动力学特性对于许多生物力学应用非常重要。然而,我们对于被动骨骼肌肉组织在受到施加的载荷时的三维拉伸响应的理解仍然存在很大的差距。特别是,各向异性的性质仍然不清楚,而且对于中间纤维方向的加载响应和拉伸时的泊松比也没有报道过。因此,在取自新鲜屠宰猪的背最长肌样本中,沿着与肌肉纤维方向平行和垂直的方向,以及在与肌肉纤维方向成 30°、45°和 60°的方向进行了拉伸试验。使用光学非接触方法测量应变。结果表明,横向或交叉纤维(TT')方向大致呈线性,并且最硬(在 1.1 的拉伸时为 77kPa 的应力),但在低拉伸时会发生失效(约 λ=1.15)。相比之下,纵向或纤维方向(L)是非线性的,并且硬度要低得多(在 1.1 的拉伸时为 10kPa 的应力),但在较高的拉伸时会发生失效(约 λ=1.65)。在中间角度观察到应力响应的几乎正弦变化。测量得到的泊松比如下:VLT=VLT'=0.47,VTT'=0.28,VTL=0.74。这些观察结果以前没有报道过,它们对我们理解骨骼肌肉组织的三维变形响应有很大的贡献。

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