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The Viscoelastic Properties of Passive Eye Muscle in Primates. II: Testing the Quasi-Linear Theory

机译:灵长类动物被动眼肌的粘弹性。 II:检验准线性理论

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摘要

We have extensively investigated the mechanical properties of passive eye muscles, in vivo, in anesthetized and paralyzed monkeys. The complexity inherent in rheological measurements makes it desirable to present the results in terms of a mathematical model. Because Fung's quasi-linear viscoelastic (QLV) model has been particularly successful in capturing the viscoelastic properties of passive biological tissues, here we analyze this dataset within the framework of Fung's theory.We found that the basic properties assumed under the QLV theory (separability and superposition) are not typical of passive eye muscles. We show that some recent extensions of Fung's model can deal successfully with the lack of separability, but fail to reproduce the deviation from superposition.While appealing for their elegance, the QLV model and its descendants are not able to capture the complex mechanical properties of passive eye muscles. In particular, our measurements suggest that in a passive extraocular muscle the force does not depend on the entire length history, but to a great extent is only a function of the last elongation to which it has been subjected. It is currently unknown whether other passive biological tissues behave similarly.
机译:我们已经广泛地研究了麻醉和瘫痪猴子体内被动眼肌肉的机械性能。流变测量固有的复杂性使得期望以数学模型的形式呈现结果。由于Fung的准线性粘弹性(QLV)模型在捕获被动生物组织的粘弹性方面特别成功,因此我们在Fung的理论框架内分析了该数据集,我们发现QLV理论假设的基本属性(可分离性和叠加)不是被动式眼肌的典型特征。我们证明了Fung模型的一些最新扩展可以成功解决缺乏可分离性的问题,但无法重现叠加的偏差。尽管QLV模型及其后代吸引了它们的优雅,但它们无法捕获被动模型的复杂机械特性。眼部肌肉。特别是,我们的测量结果表明,在被动眼外肌中,力并不取决于整个长度历史,而在很大程度上仅取决于其经受的最后一次伸长。目前尚不清楚其他被动生物组织是否具有类似行为。

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