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首页> 外文期刊>Journal of Biomechanics >Viscoelastic properties of passive skeletal muscle in compression-cyclic behaviour.
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Viscoelastic properties of passive skeletal muscle in compression-cyclic behaviour.

机译:压缩循环行为中被动骨骼肌的粘弹性。

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Skeletal muscle relaxation behaviour in compression has been previously reported, but the anisotropic behaviour at higher loading rates remains poorly understood. In this paper, uniaxial unconfined cyclic compression tests were performed on fresh porcine muscle samples at various fibre orientations to determine muscle viscoelastic behaviour. Mean compression level of 25% was applied and cycles of 2% and 10% amplitude were performed at 0.2-80Hz. Under cycles of low frequency and amplitude, linear viscoelastic cyclic relaxation was observed. Fibre/cross-fibre results were qualitatively similar, but the cross-fibre direction was stiffer (ratio of 1.2). In higher amplitude tests nonlinear viscoelastic behaviour with a frequency dependent increase in the stress cycles amplitude was found (factor of 4.1 from 0.2 to 80Hz). The predictive capability of an anisotropic quasi-linear viscoelastic model previously fitted to stress-relaxation data from similar tissue samples was investigated. Good qualitative results were obtained for low amplitude cycles but differences were observed in the stress cycle amplitudes (errors of 7.5% and 31.8%, respectively, in the fibre/cross-fibre directions). At higher amplitudes significant qualitative and quantitative differences were evident. A nonlinear model formulation was therefore developed which provided a good fit and predictions to high amplitude low frequency cyclic tests performed in the fibre/cross-fibre directions. However, this model gave a poorer fit to high frequency cyclic tests and to relaxation tests. Neither model adequately predicts the stiffness increase observed at frequencies above 5Hz. Together with data previously presented, the experimental data presented here provide a unique dataset for validation of future constitutive models for skeletal muscle in compression.
机译:先前已经报道了压缩中骨骼肌的松弛行为,但是对于较高负荷率下的各向异性行为仍然知之甚少。在本文中,在不同纤维方向上对新鲜猪肌肉样品进行了单轴无边循环压缩试验,以确定肌肉的粘弹性行为。施加25%的平均压缩级别,并在0.2-80Hz下执行2%和10%振幅的循环。在低频和振幅循环下,观察到线性粘弹性循环弛豫。纤维/交叉纤维的结果在质量上相似,但是交叉纤维的方向更硬(比率为1.2)。在更高的振幅测试中,发现了非线性粘弹性行为,其应力循环振幅随频率增加(从0.2到80Hz为4.1)。研究了各向异性拟线性粘弹性模型的预测能力,该模型先前适用于来自类似组织样本的应力松弛数据。对于低振幅循环,可以获得良好的定性结果,但在应力循环振幅中观察到差异(在纤维/交叉纤维方向上的误差分别为7.5%和31.8%)。在更高的振幅下,明显的定性和定量差异是明显的。因此,开发了一种非线性模型公式,它为在光纤/交叉光纤方向上执行的高振幅低频循环测试提供了良好的拟合和预测。但是,此模型不能很好地适应高频循环测试和松弛测试。两种模型都不能充分预测在5Hz以上频率观察到的刚度增加。与先前提供的数据一起,此处提供的实验数据提供了一个独特的数据集,用于验证受压骨骼肌未来的本构模型。

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