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Extra excitation of biceps femoris during neuromuscular electrical stimulation reduces knee medial loading

机译:神经肌肉电刺激过程中股二头肌的额外兴奋减少了膝盖内侧负荷

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摘要

Medial knee joint osteoarthritis (OA) is a debilitating and prevalent condition. Surgical treatment consists of redistributing the forces from the medial to the lateral compartment through osteotomy, or replacing the joint surfaces. As the mediolateral load distribution is related to the action of the musculature around the knee, the aim of this study was to devise a technique to redistribute these forces non-surgically through changes in muscle excitation. Eight healthy subjects participated in the experiment, and neuromuscular electrical stimulation was used to change the muscle forces around the knee. A musculoskeletal model was used to quantify the loading on the medial compartment of the knee, and a novel algorithm devised and implemented to simulate neuromuscular electrical stimulation. The forces and moments at the knee, ground reaction forces, walking velocity and step length were quantified before and after stimulation. Stimulation of the biceps femoris resulted in a significant decrease in the second peak of the medial knee joint loading by up to 0.17 body weight (p = 0.016). Kinematic parameters were not significantly affected. Neuromuscular electrical stimulation can decrease the peak loads on the medial compartment of the knee, and thus offers a promising therapy for medial knee joint OA.
机译:膝关节内侧骨关节炎(OA)是一种令人衰弱的普遍病。手术治疗包括通过截骨术将力从内侧重新分配到外侧隔室,或更换关节表面。由于中外侧负荷分布与膝盖周围肌肉组织的动作有关,因此本研究的目的是设计一种通过肌肉刺激变化以非手术方式重新分配这些力的技术。八名健康受试者参加了该实验,神经肌肉电刺激被用来改变膝盖周围的肌肉力量。肌肉骨骼模型用于量化膝盖内侧腔室的负荷,并且设计并实现了一种新算法来模拟神经肌肉电刺激。在刺激之前和之后,定量膝盖上的力和力矩,地面反作用力,步行速度和步长。股二头肌的刺激导致内侧膝关节负荷的第二个峰值显着下降,最高可减轻0.17体重(p = 0.016)。运动学参数未受到明显影响。神经肌肉电刺激可以降低膝关节内侧腔室的峰值负荷,因此为膝关节内侧OA提供了有希望的疗法。

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