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Body size and lower limb posture during walking in humans

机译:在人类行走过程中的身体大小和下肢姿势

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摘要

We test whether locomotor posture is associated with body mass and lower limb length in humans and explore how body size and posture affect net joint moments during walking. We acquired gait data for 24 females and 25 males using a three-dimensional motion capture system and pressure-measuring insoles. We employed the general linear model and commonality analysis to assess the independent effect of body mass and lower limb length on flexion angles at the hip, knee, and ankle while controlling for sex and velocity. In addition, we used inverse dynamics to model the effect of size and posture on net joint moments. At early stance, body mass has a negative effect on knee flexion (p < 0.01), whereas lower limb length has a negative effect on hip flexion (p < 0.05). Body mass uniquely explains 15.8% of the variance in knee flexion, whereas lower limb length uniquely explains 5.4% of the variance in hip flexion. Both of the detected relationships between body size and posture are consistent with the moment moderating postural adjustments predicted by our model. At late stance, no significant relationship between body size and posture was detected. Humans of greater body size reduce the flexion of the hip and knee at early stance, which results in the moderation of net moments at these joints.
机译:我们测试运动姿势是否与人体体重和下肢长度有关,并探讨身体大小和姿势如何影响步行过程中的净关节力矩。我们使用三维运动捕捉系统和压力测量鞋垫获得了24位女性和25位男性的步态数据。我们采用一般线性模型和通用性分析来评估体重和下肢长度对控制性别和速度时髋部,膝盖和踝部屈曲角度的独立影响。此外,我们使用逆动力学来模拟大小和姿势对净关节力矩的影响。在早期姿势下,体重对膝关节屈曲有负面影响(p <0.01),而下肢长度对髋关节屈曲有负面影响(p <0.05)。体重独特地解释了膝盖屈曲变化的15.8%,而下肢长度独特地解释了髋屈曲变化的5.4%。检测到的身体大小和姿势之间的关系均与我们的模型预测的适度姿势调整的时刻一致。在后期姿势下,未发现身体大小与姿势之间有显着关系。身材较大的人在早期站立时会减少髋部和膝盖的屈曲,从而导致这些关节处的净力矩减慢。

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