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新鲜屈肌腱的定量本构行为和粘弹性特性

Quantitative constitutive behaviour and viscoelastic properties of fresh flexor tendons.

作者信息

Wu J J

机构信息

Centre for Biomedical Engineering, University of Durham, Durham - UK.

出版信息

Int J Artif Organs. 2006 Sep;29(9):852-7. doi: 10.1177/039139880602900906.

Abstract

The objective of this study was to obtain detailed high quality experimental data under well-controlled test conditions in order to quantify tendon viscoelastic behaviour and provide an experimental basis for large deformation mathematical modelling. Eighty-six fresh chicken flexor digitorum profundus (FDP) tendons were mechanically tested using an Instron 5565 universal testing machine and a Bioplus bath containing physiological saline solution. At low strain rates (<or=0.001s(-1)), no strain rate dependence was found and the value of the elastic modulus was 324+/-17 MPa. At medium strain rates (0.003s(-1) - 0.1s(-1)), the elastic stiffness increased with increasing strain rate. For example, the values of the elastic modulus were 427+/-10, 653+/-21 and 837+/-11 MPa for strain rates of 0.006s(-1), 0.012s(-1) and 0.05s(-1) respectively. A series of stress relaxation experiments at different levels of strain were conducted. The higher the initial stress level, the faster the stress relaxed. For all stress relaxation tests, the relationship of normalised relaxation function G(t) against log time (ln(t)) was approximately linear (R2 = 0.935 +/- 0.028) and this supports Fung's quasi-linear viscoelasticity (QLV) hypothesis. Some preliminary work on bovine flexor tendons using a video extensometer is also reported.

摘要

本研究的目的是在严格控制的测试条件下获取详细的高质量实验数据,以量化肌腱的粘弹性行为,并为大变形数学建模提供实验依据。使用Instron 5565万能材料试验机和装有生理盐水溶液的Bioplus浴槽对86条新鲜鸡趾深屈肌腱(FDP)进行了力学测试。在低应变率(≤0.001s⁻¹)下,未发现应变率依赖性,弹性模量值为324±17MPa。在中等应变率(0.003s⁻¹ - 0.1s⁻¹)下,弹性刚度随应变率增加而增大。例如,应变率为0.006s⁻¹、0.012s⁻¹和0.05s⁻¹时,弹性模量值分别为427±10、653±21和837±11MPa。进行了一系列不同应变水平下的应力松弛实验。初始应力水平越高,应力松弛越快。对于所有应力松弛测试,归一化松弛函数G(t)与对数时间(ln(t))的关系近似呈线性(R² = 0.935 ± 0.028),这支持了冯元桢的准线性粘弹性(QLV)假设。还报告了一些使用视频引伸计对牛屈肌腱进行的初步研究工作。

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