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Assessing the friction properties of synovial joint lubrication by tracking pendulum motion

机译:通过跟踪摆锤运动评估滑膜关节润滑的摩擦特性

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© 2022 The Japan Society of Mechanical EngineersOsteoarthritis (OA) is the most common degenerative joint disease. In the advanced stages of OA, patients suffer from severe pain, functional limitations in the affected joints, and restriction of mobility. In the animal test to develop therapeutic agents of intra-articular injection for knee OA, it is important to understand the functional properties of synovial joints, and to establish precise measurement techniques. The pendulum test can mechanically evaluate the friction properties of joints. In this study, the frictional properties of the synovial joint were measured using a novel system based on the equation of motion for pendulum joint motion. It was hypothesized that the motion during the pendulum test included rotation motion and translation motion and that the instantaneous center of rotation changes occurred. It was also hypothesized that the coefficient of friction would fluctuate within one cycle in response to changes in the instantaneous center of rotation. To test these hypotheses, the motion of a rabbit knee joint was measured using a pendulum test with three laser displacement sensors, and the instantaneous center of rotation was calculated. It considered the fluctuation of the instantaneous center of rotation and measured the fluctuation of the coefficient of friction in one cycle using a novel calculation method. The trajectory of the instantaneous center of rotation was obtained, and changes in the motion phase were observed. The coefficients of friction were not uniform but were dependent on the phase of the joint motion. The coefficients of friction fluctuated significantly with a cycle of half of the joint motion.
机译:© 2022 日本机械工程师学会骨关节炎 (OA) 是最常见的退行性关节疾病。在骨关节炎的晚期,患者会出现剧烈疼痛、受累关节功能受限和活动受限。在开发膝关节内注射治疗剂的动物试验中,了解滑膜关节的功能特性并建立精确的测量技术非常重要。摆锤试验可以机械地评估接头的摩擦性能。在这项研究中,使用基于摆关节运动方程的新系统测量滑膜关节的摩擦特性。假设摆锤测试期间的运动包括旋转运动和平移运动,并且发生了瞬时旋转中心变化。还假设摩擦系数会在一个周期内波动,以响应瞬时旋转中心的变化。为了验证这些假设,使用带有三个激光位移传感器的摆锤测试测量了兔子膝关节的运动,并计算了瞬时旋转中心。它考虑了瞬时旋转中心的波动,并使用一种新颖的计算方法测量了一个周期内摩擦系数的波动。获得了瞬时旋转中心的轨迹,并观察了运动相位的变化。摩擦系数不均匀,但取决于关节运动的相位。摩擦系数随着关节运动的一半周期而显著波动。

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