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Walk-, run- and gallop-like gait patterns in human sideways locomotion

机译:人类侧身运动中的步行,奔跑和驰gall步态模式

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摘要

The purpose of this study is to examine the characteristics of gait patterns in human preferred sideways locomotion at increasing speeds. Fifteen healthy young males were asked to step sideways on a treadmill at various speeds of 1.3-6.1. km/h. The times of foot contact and take-off were analyzed. Three gait patterns were observed. At slow speeds, all of the subjects performed a walk-like pattern. When the treadmill speed exceeded approximately 3.5. km/h, the subjects preferred gait patterns with a flight phase. Most of the subjects performed an asymmetric gait pattern that was similar to a forward gallop, whereas only two out of fifteen subjects performed a run-like gait pattern. Because the left and right legs are positioned along the movement direction, it might be more efficient to divide roles between the leading and trailing limbs at high speeds: the leading limb functions to produces breaking and vertical force, and the trailing limb mainly absorbs the impact of foot contact and generates propulsive forces.
机译:这项研究的目的是要检查人类首选的侧向运动中步态模式的特征,并以增加的速度进行运动。 15名健康的年轻男性被要求以1.3-6.1的不同速度在跑步机上侧身行走。公里/小时分析了脚接触和起飞的时间。观察到三种步态模式。在低速下,所有对象都表现出步行样的模式。当跑步机速度超过约3.5。 km / h,受试者偏向于具有飞行阶段的步态模式。大多数受试者的步态不对称,类似于向前驰gall,而十五人中只有两个受试者具有类似奔跑的步态。由于左腿和右腿沿运动方向放置,因此在前肢和后肢之间高速划分角色可能会更有效:前肢起产生断裂力和垂直力的作用,而后肢主要吸收冲击力接触脚并产生推进力。

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