Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, Florida, USA.
J Orthop Res. 2013 Jun;31(6):921-9. doi: 10.1002/jor.22304. Epub 2012 Dec 31.
Mechanical loading is believed to be a critical factor in the development and treatment of knee osteoarthritis. However, the contact forces to which the knee articular surfaces are subjected during daily activities cannot be measured clinically. Thus, the ability to predict internal knee contact forces accurately using external measures (i.e., external knee loads and muscle electromyographic [EMG] signals) would be clinically valuable. We quantified how well external knee load and EMG measures predict internal knee contact forces during gait. A single subject with a force-measuring tibial prosthesis and post-operative valgus alignment performed four gait patterns (normal, medial thrust, walking pole, and trunk sway) to induce a wide range of external and internal knee joint loads. Linear regression analyses were performed to assess how much of the variability in internal contact forces was accounted for by variability in the external measures. Though the different gait patterns successfully induced significant changes in the external and internal quantities, changes in external measures were generally weak indicators of changes in total, medial, and lateral contact force. Our results suggest that when total contact force may be changing, caution should be exercised when inferring changes in knee contact forces based on observed changes in external knee load and EMG measures. Advances in musculoskeletal modeling methods may be needed for accurate estimation of in vivo knee contact forces.
机械负荷被认为是膝关节骨关节炎发展和治疗的一个关键因素。然而,在日常活动中,膝关节关节表面所承受的接触力无法在临床上进行测量。因此,能够使用外部测量(即外部膝关节负荷和肌电图 [EMG] 信号)准确预测内部膝关节接触力将具有重要的临床价值。我们量化了外部膝关节负荷和 EMG 测量在步态中预测内部膝关节接触力的程度。一名接受了测力胫骨假体和术后外翻矫正的单一受试者进行了四种步态模式(正常、内侧推力、步行杆和躯干摆动),以产生广泛的外部和内部膝关节负荷。进行线性回归分析以评估内部接触力的可变性有多少由外部测量的可变性来解释。尽管不同的步态模式成功地引起了外部和内部参数的显著变化,但外部测量的变化通常是总接触力、内侧接触力和外侧接触力变化的微弱指标。我们的研究结果表明,当总接触力可能发生变化时,基于观察到的外部膝关节负荷和 EMG 测量的变化来推断膝关节接触力的变化时应谨慎。可能需要先进的肌肉骨骼建模方法来准确估计体内膝关节接触力。