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Pendulum Mass Affects the Measurement of Articular Friction Coefficient

机译:摆块物质影响关节摩擦系数的测量

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摘要

Friction measurements of articular cartilage are important to determine the relative tribologic contributions made by synovial fluid or cartilage, and to assess the efficacy of therapies for preventing the development of post-traumatic osteoarthritis. Stanton’s equation is the most frequently used formula for estimating the whole joint friction coefficient (μ) of an articular pendulum, and assumes pendulum energy loss through a mass-independent mechanism. This study examines if articular pendulum energy loss is indeed mass independent, and compares Stanton’s model to an alternative model, which incorporates viscous damping, for calculating μ. Ten loads (25-100% body weight) were applied in a random order to an articular pendulum using the knees of adult male Hartley guinea pigs (n = 4) as the fulcrum. Motion of the decaying pendulum was recorded and μ was estimated using two models: Stanton’s equation, and an exponential decay function incorporating a viscous damping coefficient. μ estimates decreased as mass increased for both models. Exponential decay model fit error values were 82% less than the Stanton model. These results indicate that μ decreases with increasing mass, and that an exponential decay model provides a better fit for articular pendulum data at all mass values. In conclusion, inter-study comparisons of articular pendulum μ values should not be made without recognizing the loads used, as μ values are mass dependent.
机译:关节软骨的摩擦测量对于确定滑液或软骨的相对摩擦学贡献以及评估预防创伤后骨关节炎发展的治疗效果非常重要。 Stanton方程是用于估计关节摆的整个关节摩擦系数(μ)的最常用公式,并假设摆锤能量的损失是通过质量独立的机制进行的。这项研究检查了关节摆能量损失的确是否与质量无关,并将斯坦顿模型与包含粘性阻尼的替代模型进行了比较,以计算μ。以成年雄性哈特利豚鼠(n = 4)的膝盖为支点,随机将十个载荷(25-100%体重)施加到关节摆上。记录了衰减摆的运动,并使用两种模型估算了μ:Stanton方程和包含粘性阻尼系数的指数衰减函数。两种模型的μ估计值均随质量的增加而减小。指数衰减模型拟合误差值比Stanton模型小82%。这些结果表明,μ随着质量的增加而减小,并且指数衰减模型为所有质量值下的关节摆数据提供了更好的拟合。总之,在不认识所用载荷的情况下,不应进行关节摆μ值的研究间比较,因为μ值与质量有关。

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