首页> 外文会议>ASME/STLE international joint tribology conference 2012 >STRESS RELAXATION OF ARTICULAR CARTILAGE IN UNCONFINED COMPRESSION
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STRESS RELAXATION OF ARTICULAR CARTILAGE IN UNCONFINED COMPRESSION

机译:无限制压缩中关节软骨的应力松弛

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摘要

The articular cartilage function is to allow the bones in a joint to move without causing excess friction and damage. When this cartilage becomes damaged, the supportive and lubricating mechanisms break down, leading to injuries which can be permanent or take extended periods of time for recovery. Because of its importance in general health and body mobility, the unique lubricating properties of cartilage have been studied for many decades. Many current theories exist to characterize the biphasic and triphasic nature of cartilage; however, an important reason that cartilage is so effective is its viscoelastic nature, which allows elastic and dissipative mechanisms to exist simultaneously. It is desired to derive the material properties of cartilage in order to better understand its mechanical effectiveness. Utilizing a CETR-UMT-3 Tribometer, stress relaxation experiments will be performed on freshly harvested equine cartilage plugs that remain hydrated in a fluid bath. Viscoelastic models, such as the Prony series and fractional derivative, are applied to the experimental data to determine the storage and loss moduli of the sample explants. The storage and loss information characterizes the mechanical response of cartilage, and provides insight into the effectiveness and longevity of biological joints. A comparison will be made between joints that experience similar loads, but undergo different relative motions, to determine if the mechanical properties of cartilage are tailored to joint function. Os-teoarthritic cartilage will also be explored for deviations in viscoelastic behavior compared to healthy cartilage. Ultimately, it is hoped that a viscoelastic characterization of articular cartilage will lead to insight into the precursors of osteoarthritis, more advanced prosthetics, and biomimetric applications such as the integration of flexible surfaces in mechanical systems.
机译:关节软骨的功能是允许关节中的骨骼移动而不会引起过度的摩擦和损坏。当该软骨受损时,支撑和润滑机制就会失效,导致受伤,这些受伤可能是永久性的,也可能需要较长时间才能恢复。由于其在总体健康和身体活动性方面的重要性,人们对软骨的独特润滑性能进行了数十年的研究。存在许多当前的理论来表征软骨的两相和三相特性。然而,软骨如此有效的一个重要原因是它的粘弹性,这使得弹性和耗散机制可以同时存在。为了更好地理解其机械效力,期望获得软骨的材料性质。利用CETR-UMT-3摩擦计,应力松弛实验将在新收获的马软骨塞上进行,该塞在水浴中保持水合。将粘弹性模型(例如Prony级数和分数导数)应用于实验数据,以确定样品外植体的储存模量和损失模量。储存和丢失信息表征了软骨的机械反应,并提供了对生物关节有效性和寿命的了解。将对承受相似载荷但经受不同相对运动的关节之间进行比较,以确定软骨的机械性能是否适合于关节功能。与健康软骨相比,还将探讨骨关节炎。最终,希望通过关节软骨的粘弹性表征能够深入了解骨关节炎的前体,更先进的修复术以及生物计量学应用,例如将柔性表面整合到机械系统中。

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  • 会议地点 Denver CO(US)
  • 作者单位

    Graduate Research Assistant Woodruff School of Mechanical Engineering Georgia Institute of Technology Atlanta, GA 30332;

    Mechanical Engineering Auburn University Auburn, AL 36849;

    Woodruff School of Mechanical Engineering Georgia Institute of Technology Atlanta, GA 30332;

    College of Veterinary Medicine Auburn University Auburn, AL 36849;

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