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首页> 外文期刊>The Journal of Experimental Biology >Temperature effects in articular cartilage biomechanics
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Temperature effects in articular cartilage biomechanics

机译:关节软骨生物力学中的温度效应

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摘要

Articular cartilage is the soft tissue that covers contacting surfaces of bones in synovial joints. Cartilage is composed of chondrocytes and an extracellular matrix containing numerous biopolymers, cations and water. Healthy cartilage functions biomechanically to provide smooth and stable joint movement. Degenerative joint diseases such as osteoarthritis involve cartilage deterioration, resulting in painful and cumbersome joint motion. Temperature is a fundamental quantity in mechanics, yet the effects of temperature on cartilage mechanical behavior are unknown. This study addressed the questions of whether cartilage stiffness and stress relaxation change with temperature. Samples of middle-zone bovine calf patellofemoral cartilage were tested in unconfined compression first at 24 degrees C and then again after heating to 60 degrees C. The data reveal that when temperature increases: (1) both peak and equilibrium stiffness increase by 150 and 8%, respectively, and (2) stress relaxation is faster at higher temperature, as shown by a 60% decrease in the time constant. The increases in temperature-dependent stiffness are consistent with polymeric mechanisms of matrix viscoelasticity but not with interstitial fluid flow. The changes in the time constant are consistent with a combination of both fluid flow and matrix viscoelasticity. Furthermore, we discovered a novel phenomenon: at stress-relaxation equilibrium, compressive stress increased with temperature. These data demonstrate a rich area of cartilage mechanics that has previously been unexplored and emphasize the role of polymer dynamics in cartilage viscoelasticity. Further studies of cartilage polymer dynamics may yield additional insight into mechanisms of cartilage material behavior that could improve treatments for cartilage degeneration.
机译:关节软骨是覆盖滑膜关节中骨骼接触表面的软组织。软骨由软骨细胞和细胞外基质组成,其中包含大量生物聚合物,阳离子和水。健康的软骨具有生物力学功能,可提供平稳的关节运动。诸如骨关节炎之类的退化性关节疾病涉及软骨恶化,从而导致疼痛和麻烦的关节运动。温度是力学中的基本量,但是温度对软骨力学行为的影响尚不清楚。这项研究解决了软骨硬度和应力松弛是否随温度变化的问题。首先在24摄氏度,然后在加热至60摄氏度后,在无侧限压迫下测试中区牛小腿pa股软骨的样本。数据显示,当温度升高时:(1)峰值刚度和平衡刚度均增加150和8时间常数分别减少60%和(2)在较高温度下应力松弛更快。与温度有关的刚度的增加与基体粘弹性的聚合机理相一致,但与间隙流体的流动相符。时间常数的变化与流体流动和基体粘弹性的组合一致。此外,我们发现了一种新现象:在应力松弛平衡下,压应力随温度增加。这些数据证明了以前尚未探索的丰富的软骨力学领域,并强调了聚合物动力学在软骨粘弹性中的作用。软骨聚合物动力学的进一步研究可能会进一步了解软骨物质行为的机制,从而改善软骨变性的治疗方法。

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