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首页> 外文期刊>Journal of Biomechanics >The impact of adding trunk motion to the interpretation of the role of joint moments during normal walking.
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The impact of adding trunk motion to the interpretation of the role of joint moments during normal walking.

机译:增加躯干运动对正常行走过程中关节力矩作用的解释的影响。

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Biomechanical model assumptions affect the interpretation of the role of the muscle or joint moments to the segmental power estimated by induced acceleration analysis (IAA). We evaluated the effect of modeling the pelvis and trunk segments as two separate segments (8 SM) versus as a single segment (7 SM) on the segmental power, support of the body, knee and hip extension acceleration produced by the joint moments during the stance phase of normal walking. Significant differences were observed in the contribution of the stance hip abductor and extensor moments to support, ipsilateral knee and hip acceleration, and ipsilateral thigh and upper body power. The primary finding was that the role of the stance hip moment in generating ipsilateral thigh and upper body power differed based on degrees of freedom in the model. Secondarily, the magnitude of contributions also differed. For example, the hip abductor and extensor moments showed greater contribution to support, hip and knee acceleration in the 8 SM. IAA and segment power analysis are sensitive to the degrees of freedom between the pelvis and trunk. There is currently no gold standard by which to evaluate the accuracy of IAA predictions. However, modeling the pelvis and trunk as separate segments is closer to the anatomical architecture of the body. An 8 SM appears to be more appropriate for estimating the role of joint moments, particularly to motion of more proximal segments during normal walking.
机译:生物力学模型假设会影响对肌肉或关节力矩对通过感应加速度分析(IAA)估算的节段力量的作用的解释。我们评估了将骨盆段和躯干段建模为两个单独的段(8 SM)而不是单个段(7 SM)时对分段力量,身体支撑,膝关节和髋关节伸展运动所产生的关节力矩产生的影响。正常行走的站立阶段。在站立的髋外展肌和伸肌力矩对支撑的贡献,同侧膝盖和髋部加速以及同侧大腿和上身力量方面,观察到了显着差异。主要发现是姿势髋关节力矩在产生同侧大腿和上身力量中的作用因模型中的自由度而异。其次,捐款额也有所不同。例如,在8 SM中,髋关节外展力矩和伸肌力矩对支撑,髋关节和膝关节加速的贡献更大。 IAA和分段功率分析对骨盆和躯干之间的自由度敏感。当前,尚无用于评估IAA预测准确性的黄金标准。但是,将骨盆和躯干建模为单独的部分更接近于人体的解剖结构。 8 SM似乎更适合于估计关节力矩的作用,尤其是在正常行走过程中更近端节段的运动。

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