首页> 外文会议>ASME summer bioengineering conference;SBC2010 >Condylar Contact During Normal Walking and Lateral Trunk Sway Gait: An EMG-Driven Modeling Approach to Estimate Articular Loading
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Condylar Contact During Normal Walking and Lateral Trunk Sway Gait: An EMG-Driven Modeling Approach to Estimate Articular Loading

机译:正常步行和躯干侧向步态时的突接触:一种由EMG驱动的建模方法来估计关节负荷

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The knee adduction moment has a characteristic double hump pattern with the first peak generally larger than the second. Recently, Mundermann showed that walking with a lateral trunk sway can reduce the 1~(st) peak moment [1]. One might expect from this finding that there would be a decrease in medial compartment loading. This however may be too simplistic a view. Fregly et al. showed that a decrease in knee adduction moment does not guarantee a decrease in medial contact [2]. Moreover, the relationship between net joint moments and loading is not straightforward, especially when agonist/antagonist muscles are co-activated as occurs in patients with pathology. Computational methods can benefit by accounting for subject specific neuromuscular activation patterns while taking into account subject specific dynamics when predicting articular loading. In this paper we outline our EMG-driven modeling approach to predict articular loading during trunk sway for a patient with a force measuring instrumented knee implant. We hypothesized that walking with a lateral trunk sway would: (a) decrease medial contact force, and (b) increase contact force in the lateral compartment.
机译:膝盖内收力矩具有特征性的双峰模式,第一个峰通常大于第二个峰。最近,曼德曼(Mundermann)表明,用侧向躯干摇摆走路可以减少1〜(st)高峰时刻[1]。人们可能会从这一发现中期望内侧隔室的负荷会减少。但是,这可能太简单了。 Fregly等。结果表明,膝关节内收力矩的减少不能保证内侧接触的减少[2]。而且,净关节力矩与负荷之间的关系并不直接,特别是当激动剂/拮抗剂肌肉被共同激活时(如在病理患者中发生的情况)。计算方法可以通过考虑对象特定的神经肌肉激活模式,同时在预测关节负荷时考虑对象的特定动态而受益。在本文中,我们概述了肌电图驱动的建模方法,以通过力测量器械植入式膝关节植入物预测患者躯干摇摆过程中的关节负荷。我们假设用外侧躯干摇摆走路会:(a)减少内侧接触力,和(b)增加外侧隔室的接触力。

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