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An Analytical Calculation of Frictional and Bending Moments at the Head-Neck Interface of Hip Joint Implants during Different Physiological Activities

机译:不同生理活动下髋关节植入物头颈部界面的摩擦力矩和弯曲力矩的解析计算

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摘要

This study predicts the frictional moments at the head-cup interface and frictional torques and bending moments acting on the head-neck interface of a modular total hip replacement across a range of activities of daily living. The predicted moment and torque profiles are based on the kinematics of four patients and the implant characteristics of a metal-on-metal implant. Depending on the body weight and type of activity, the moments and torques had significant variations in both magnitude and direction over the activity cycles. For the nine investigated activities, the maximum magnitude of the frictional moment ranged from 2.6 to 7.1 Nm. The maximum magnitude of the torque acting on the head-neck interface ranged from 2.3 to 5.7 Nm. The bending moment acting on the head-neck interface varied from 7 to 21.6 Nm. One-leg-standing had the widest range of frictional torque on the head-neck interface (11 Nm) while normal walking had the smallest range (6.1 Nm). The widest range, together with the maximum magnitude of torque, bending moment, and frictional moment, occurred during one-leg-standing of the lightest patient. Most of the simulated activities resulted in frictional torques that were near the previously reported oxide layer depassivation threshold torque. The predicted bending moments were also found at a level believed to contribute to the oxide layer depassivation. The calculated magnitudes and directions of the moments, applied directly to the head-neck taper junction, provide realistic mechanical loading data for in vitro and computational studies on the mechanical behaviour and multi-axial fretting at the head-neck interface.
机译:这项研究预测了在日常生活的各种活动中,模块化全髋关节置换术的头杯界面处的摩擦力矩以及作用在头颈部界面上的摩擦扭矩和弯曲力矩。预测的力矩和扭矩曲线基于四位患者的运动学和金属对金属植入物的植入物特征。根据体重和活动类型的不同,力矩和扭矩在活动周期中的大小和方向都有很大的变化。对于九个调查的活动,最大的摩擦力矩范围从2.6到7.1 Nm。作用在头颈部接口上的最大扭矩在2.3到5.7 Nm之间。作用在头颈部界面上的弯矩从7到21.6 Nm。单腿站立时头颈部界面上的摩擦扭矩范围最大(11 Nm),而正常行走时范围最小(6.1 Nm)。最宽的范围,以及最大的扭矩,弯曲力矩和摩擦力矩,发生在最轻患者的单腿站立期间。大多数模拟活动导致的摩擦扭矩接近先前报道的氧化层钝化阈值扭矩。还发现预测的弯矩处于认为有助于氧化物层钝化的水平。计算出的力矩大小和方向直接应用于头部-颈部锥度交界处,可提供真实的机械载荷数据,用于体外和计算研究,以研究头部-颈部界面处的机械行为和多轴微动。

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