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Intersegmental coordination during human locomotion: does planar covariation of elevation angles reflect central constraints?

机译:人体运动过程中的节间协调:仰角的平面协变是否反映了中心约束?

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To study intersegmental coordination in humans performing different locomotor tasks (backward, normal, fast walking, and running), we analyzed the spatiotemporal patterns of both elevation and joint angles bilaterally in the sagittal plane. In particular, we determined the origins of the planar covariation of foot, shank, and thigh elevation angles. This planar constraint is observable in the three-dimensional space defined by these three angles and corresponds to the plane described by the three time-varying elevation angle variables over each step cycle. Previous studies showed that this relation between elevation angles constrains lower limb coordination in various experimental situations. We demonstrate here that this planar covariation mainly arises from the strong correlation between foot and shank elevation angles, with thigh angle independently contributing to the pattern of intersegmental covariation. We conclude that the planar covariation of elevation angles does not reflect central constraints, as previously suggested. An alternative approach for analyzing the patterns of coordination of both elevation and joint (hip, knee, and ankle) angles is used, based on temporal cross-correlation and phase relationships between pairs of kinematic variables. We describe the changes in the pattern of intersegmental coordination that are associated with the changes of locomotor modes and locomotor speeds. We provide some evidence for a distinct control of thigh motion and discuss the respective contributions of passive mechanical factors and of active (arising from neural control) factors to the formation and the regulation of the locomotor pattern throughout the gait cycle.
机译:为了研究执行不同运动任务(向后,正常,快走和奔跑)的人的节间协调,我们分析了矢状面两侧仰角和关节角的时空模式。特别是,我们确定了脚,小腿和大腿仰角的平面协变的原点。该平面约束在由这三个角度定义的三维空间中是可观察到的,并且对应于每个步骤周期中三个时变仰角变量描述的平面。先前的研究表明,在各种实验情况下,仰角之间的这种关系会限制下肢的协调性。我们在这里证明了这种平面协变主要源于脚和小腿仰角之间的强相关性,而大腿角独立地促成了节间协变的模式。我们得出结论,如前所述,仰角的平面协变不反映中心约束。基于时间互相关和运动变量对之间的相位关系,使用了另一种方法来分析仰角和关节(髋,膝和踝)角的协调模式。我们描述了与运动模式和运动速度的变化有关的节间协调模式的变化。我们为大腿运动的独特控制提供了一些证据,并讨论了整个步态周期中被动机械因素和主动(由神经控制引起)因素对运动模式的形成和调节的贡献。

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