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Discrete quasi-linear viscoelastic damping analysis of connective tissues and the biomechanics of stretching

机译:结缔组织的离散准线性粘弹性阻尼分析和拉伸的生物力学

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摘要

The time- and frequency-dependent properties of connective tissue define their physiological function, but are notoriously difficult to characterize. Well-established tools such as linear viscoelasticity and the Fung quasi-linear viscoelastic (QLV) model impose forms on responses that can mask true tissue behavior. Here, we applied a more general discrete quasi-linear viscoelastic (DQLV) model to identify the static and dynamic time- and frequency-dependent behavior of rabbit medial collateral ligaments. Unlike the Fung QLV approach, the DQLV approach revealed that energy dissipation is elevated at a loading period of ~10 seconds. The fitting algorithm was applied to the entire loading history on each specimen, enabling accurate estimation of the material's viscoelastic relaxation spectrum from data gathered from transient rather than only steady states. The application of the DQLV method to cyclically loading regimens has broad applicability for the characterization of biological tissues, and the results suggest a mechanistic basis for the stretching regimens most favored by athletic trainers.
机译:结缔组织的时间和频率依赖性决定了它们的生理功能,但众所周知很难表征。完善的工具(例如线性粘弹性和Fung准线性粘弹性(QLV)模型)在响应中施加形式,可以掩盖真实的组织行为。在这里,我们应用了一个更通用的离散准线性粘弹性(DQLV)模型来识别兔子内侧副韧带的静态和动态时间和频率相关行为。与Fung QLV方法不同,DQLV方法揭示了在约10秒的加载时间段内,能量耗散增加。将拟合算法应用于每个样本的整个加载历史记录,从而能够根据从瞬态而不是稳态收集的数据准确估算材料的粘弹性弛豫谱。 DQLV方法在循环加载方案中的应用对生物组织的表征具有广泛的适用性,结果表明了运动教练最喜欢的拉伸方案的机械基础。

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