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Variation in trunk kinematics influences variation in step width during treadmill walking by older and younger adults.

机译:躯干运动学的变化会影响老年人和年轻人在跑步机上行走时步幅的变化。

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摘要

Step-by-step variations in step width have been hypothesized to reflect adjustments to swing foot placement in response to preceding frontal plane trunk kinematics. The present study tested this hypothesis while 12 younger and 11 older subjects walked on treadmill for 10min at a self-selected velocity. The relationship between step-by-step variations in step width and frontal plane trunk COM kinematics was determined using multiple regression analysis. Trunk kinematics at midstance were significantly (p<0.001) and strongly (R(2)=0.54) related to the subsequent foot placement supporting the primary hypothesis. Additionally, this relationship was significantly affected by age (p<0.001) and stepping limb (p<0.001). These results implicate feedback driven control of foot trajectory during the swing phase. Further, they provide a biomechanical framework by which loss of frontal plane dynamic stability may result from a step width that is insufficient to decelerate and redirect trunk kinematics in preparation for the next step.
机译:假设步幅逐步变化,以反映对前额躯干运动学的响应,以调整后脚的摆放位置。本研究检验了这一假设,而12名年轻和11名年龄较大的受试者以自行选择的速度在跑步机上行走10分钟。使用多元回归分析确定步幅逐步变化与额面躯干COM运动学之间的关系。躯干运动在中期时显着(p <0.001)和强烈(R(2)= 0.54)与随后支持主要假设的脚的放置有关。此外,这种关系还受到年龄(p <0.001)和踏脚(p <0.001)的显着影响。这些结果暗示在摆动阶段中脚轨迹的反馈驱动控制。此外,它们提供了一种生物力学框架,通过该生物力学框架,步幅可能导致前平面动态稳定性的丧失,而步幅不足以使躯干运动学减速并重新定向,以准备下一步。

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