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定义和评估在高要求日常活动条件下进行膝关节磨损模拟的测试方案。

Definition and evaluation of testing scenarios for knee wear simulation under conditions of highly demanding daily activities.

机构信息

Aesculap AG Research & Development, Tuttlingen, Germany.

出版信息

Med Eng Phys. 2013 May;35(5):591-600. doi: 10.1016/j.medengphy.2012.07.003. Epub 2012 Aug 24.

Abstract

The objective of our study was the definition of testing scenarios for knee wear simulation under various highly demanding daily activities of patients after total knee arthroplasty. This was mainly based on a review of published data on knee kinematics and kinetics followed by the evaluation of the accuracy and precision of a new experimental setup. We combined tibio-femoral load and kinematic data reported in the literature to develop deep squatting loading profiles for simulator input. A servo-hydraulic knee wear simulator was customised with a capability of a maximum flexion of 120°, a tibio-femoral load of 5000N, an anterior-posterior (AP) shear force of ±1000N and an internal-external (IE) rotational torque of ±50Nm to simulate highly demanding patient activities. During the evaluation of the newly configurated simulator the ability of the test machine to apply the required load and torque profiles and the flexion kinematics in a precise manner was examined by nominal-actual profile comparisons monitored periodically during subsequent knee wear simulation. For the flexion kinematics under displacement control a delayed actuator response of approximately 0.05s was inevitable due to the inertia of masses in movement of the coupled knee wear stations 1-3 during all applied activities. The axial load and IE torque is applied in an effective manner without substantial deviations between nominal and actual load and torque profiles. During the first third of the motion cycle a marked deviation between nominal and actual AP shear load profiles has to be noticed but without any expected measurable effect on the latter wear simulation due to the fact that the load values are well within the peak magnitude of the nominal load amplitude. In conclusion the described testing method will be an important tool to have more realistic knee wear simulations based on load conditions of the knee joint during activities of daily living.

摘要

我们研究的目的是为全膝关节置换术后患者各种高要求的日常活动下的膝关节磨损模拟定义测试场景。这主要基于对膝关节运动学和动力学已发表数据的回顾,随后评估了新实验装置的准确性和精密度。我们结合文献中报告的胫股负荷和运动学数据,为模拟器输入开发了深蹲加载曲线。定制了一个伺服液压膝关节磨损模拟器,最大屈曲度为 120°,胫股负荷为 5000N,前-后(AP)剪切力为±1000N,内-外(IE)旋转扭矩为±50Nm,以模拟高要求的患者活动。在评估新配置的模拟器时,通过在随后的膝关节磨损模拟过程中定期监测名义-实际曲线比较,检查试验机施加所需负荷和扭矩曲线以及精确的屈曲运动学的能力。对于位移控制下的屈曲运动学,由于在所有应用活动中耦合的膝关节磨损站 1-3 的运动中的质量惯性,不可避免地会出现约 0.05s 的延迟执行器响应。轴向负荷和 IE 扭矩以有效的方式施加,名义和实际负荷和扭矩曲线之间没有明显的偏差。在运动周期的前三分之一期间,必须注意到名义和实际 AP 剪切负荷曲线之间存在明显偏差,但由于负荷值处于名义负荷幅度的峰值范围内,因此不会对后者的磨损模拟产生任何可测量的影响。总之,所描述的测试方法将是一种重要的工具,可根据日常生活中膝关节的负荷条件进行更真实的膝关节磨损模拟。

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