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Effect of dynamic loading on the frictional response of bovine articular cartilage

机译:动态载荷对牛关节软骨摩擦反应的影响

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摘要

The objective of this study was to test the hypotheses that (1) the steady-state friction coefficient of articular cartilage is significantly smaller under cyclical compressive loading than the equilibrium friction coefficient under static loading, and decreases as a function of loading frequency; (2) the steady-state cartilage interstitial fluid load support remains significantly greater than zero under cyclical compressive loading and increases as a function of loading frequency. Unconfined compression tests with sliding of bovine shoulder cartilage against glass in saline were carried out on fresh cylindrical plugs (n = 12), under three sinusoidal loading frequencies (0.05, 0.5 and 1 Hz) and under static loading; the time-dependent friction coefficient mu(eff) was measured. The interstitial fluid load support was also predicted theoretically. Under static loading mu(eff) increased from a minimum value (mu(min) = 0.005 +/- 0.003) to an equilibrium value (mu(eq) = 0.153 +/- 0.032). In cyclical compressive loading tests mu(eff) similarly rose from a minimum value (mu(min) = 0.004 +/- 10.002, 0.003 +/- 0.001 and 0.003 +/- 0.001 at 0.05, 0.5 and 1 Hz) and reached a steady-state response oscillating between a lower-bound (mu(Ib) = 0.092 +/- 0.016, 0.083 +/- 0.019 and 0.084 +/- 0.020) and upper bound (mu(ub) = 0.382 +/- 0.057, 0.358 +/- 0.059, and 0.298 +/- 0.061). For all frequencies it was found that mu(ub) > mu(eq) and mu(lb) < mu(eq) (p < 0.05). Under cyclical compressive loading the interstitial fluid load support was found to oscillate above and below the static loading response, with suction occurring over a portion of the loading cycle at steady-state conditions. All theoretical predictions and most experimental results demonstrated little sensitivity to loading frequency. On the basis of these results, both hypotheses were rejected. Cyclical compressive loading is not found to promote lower frictional coefficients or higher interstitial fluid load support than static loading. (c) 2004 Elsevier Ltd. All rights reserved.
机译:本研究的目的是检验以下假设:(1)循环压缩载荷下关节软骨的稳态摩擦系数明显小于静态载荷下的平衡摩擦系数,并随载荷频率的降低而减小; (2)在周期性压缩载荷下,稳态软骨间质液的载荷支持仍显着大于零,并随载荷频率的增加而增加。在三个正弦曲线载荷频率(0.05、0.5和1 Hz)和静态载荷下,在新鲜的圆柱形塞子(n = 12)上进行牛肩软骨相对于玻璃在盐水中滑动的无边压缩试验。测量随时间变化的摩擦系数mu(eff)。从理论上也预测了间隙流体的负荷。在静态负载下,mu(eff)从最小值(mu(min)= 0.005 +/- 0.003)增加到平衡值(mu(eq)= 0.153 +/- 0.032)。在周期性压缩载荷测试中,mu(eff)同样从最小值(mu(min)= 0.004 +/- 10.002、0.003 +/- 0.001和0.003 +/- 0.001在0.05、0.5和1 Hz时上升)并达到稳定状态响应在下限(mu(Ib)= 0.092 +/- 0.016,0.083 +/- 0.019和0.084 +/- 0.020)和上限(mu(ub)= 0.382 +/- 0.057,0.358 + /-0.059和0.298 +/- 0.061)。对于所有频率,发现mu(ub)> mu(eq)和mu(lb)

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