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基于惯性测量单元预测腿部力量和膝关节力矩:一项体外研究。

Predicting Leg Forces and Knee Moments Using Inertial Measurement Units: An In Vitro Study.

机构信息

Department of Mechanical Engineering, University of Michigan - Dearborn, 4901 Evergreen Road, Dearborn, MI 48128.

Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI 48109.

出版信息

J Biomech Eng. 2024 Feb 1;146(2). doi: 10.1115/1.4064145.

Abstract

We compared the ability of seven machine learning algorithms to use wearable inertial measurement unit (IMU) data to identify the severe knee loading cycles known to induce microdamage associated with anterior cruciate ligament rupture. Sixteen cadaveric knee specimens, dissected free of skin and muscle, were mounted in a rig simulating standardized jump landings. One IMU was located above and the other below the knee, the applied three-dimensional action and reaction loads were measured via six-axis load cells, and the three-dimensional knee kinematics were also recorded by a laboratory motion capture system. Machine learning algorithms were used to predict the knee moments and the tibial and femur vertical forces; 13 knees were utilized for training each model, while three were used for testing its accuracy (i.e., normalized root-mean-square error) and reliability (Bland-Altman limits of agreement). The results showed the models predicted force and knee moment values with acceptable levels of error and, although several models exhibited some form of bias, acceptable reliability. Further research will be needed to determine whether these types of models can be modified to attenuate the inevitable in vivo soft tissue motion artifact associated with highly dynamic activities like jump landings.

摘要

我们比较了七种机器学习算法利用可穿戴惯性测量单元(IMU)数据识别已知会引起与前交叉韧带断裂相关的微损伤的严重膝关节加载循环的能力。十六个离体膝关节标本,在模拟标准化跳跃着陆的装置中解剖,去除皮肤和肌肉。一个 IMU 位于膝关节上方,另一个位于膝关节下方,通过六轴测力传感器测量施加的三维作用力和反作用力,实验室运动捕捉系统还记录了三维膝关节运动学。机器学习算法用于预测膝关节力矩和胫骨及股骨垂直力;每个模型都使用 13 个膝关节进行训练,而 3 个膝关节用于测试其准确性(即归一化均方根误差)和可靠性(Bland-Altman 协议界限)。结果表明,这些模型可以预测力和膝关节力矩值,误差处于可接受水平,尽管一些模型表现出某种形式的偏差,但可靠性仍可接受。还需要进一步的研究来确定是否可以修改这些类型的模型以减轻与跳跃着陆等高度动态活动相关的不可避免的体内软组织运动伪影。

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