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Coordination between upper- and lower-limb movements is different during overground and treadmill walking

机译:在地面和跑步机上行走时,上肢和下肢运动之间的协调是不同的

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Locomotion studies employ either treadmill (TW) or overground walking (OW), considering that differences between them are negligible. The present study tests this notion by comparing coordination between upper- and lower-limb movements in healthy individuals during OW and TW at matched speeds. Results indicated that TW induced a higher cadence, which highly influenced interlimb coordination, in terms of frequency coupling and relative phase between arm and thigh motion. At low speed, the 2:1 pattern (double arm swing per stride) displayed lower incidence in TW compared to OW, and this was correlated with a lower sagittal acceleration at the shoulders, at twice the stride frequency, in the former condition. The low occurrence of the 2:1 coupling in TW, moreover, was correlated to a preferential adoption of a cadence exceeding 80% of the arm’s resonant frequency, whereas higher incidence of this pattern in OW involved a preferential cadence below the 80% threshold. Results indicated also that the relative phase between arm and ipsilateral thigh swinging was smaller in TW, in relation to an earlier occurrence of maximum thigh extension, shortened stance phase, and increased cadence. These findings suggest that arm–leg coordination is different in OW and TW, and that difference can be mainly ascribed to condition-specific setting of central mechanisms for scaling stride frequency, for controlling dynamic axial posture (sagittal shoulder acceleration), and, possibly, for maintaining inter-limb synchrony. Awareness of a different “motor set” in TW and OW is critical if data from the two paradigms are used in physiological and patho-physiological studies. Keywords Upper limb swing - Interlimb coupling - Overground walking - Treadmill walking
机译:运动研究采用跑步机(TW)或地面行走(OW),因为它们之间的差异可以忽略不计。本研究通过比较健康个体在OW和TW以相同速度进行的上肢和下肢运动之间的协调性来测试这一概念。结果表明,在频率耦合和手臂与大腿运动之间的相对相位方面,TW诱导了更高的节奏,从而极大地影响了肢体协调。在低速下,与OW相比,2:1模式(每步双臂摆动)在TW中的发生率较低,这与在前一种情况下以两倍的步幅频率在肩膀上产生较低的矢状加速度相关。此外,TW中2:1耦合的发生率低与优先采用频率超过手臂共振频率80%的节奏有关,而OW中这种模式的发生率较高,涉及低于80%阈值的优先节奏。结果还表明,相对于大腿伸直,站立姿势相缩短和脚踏节奏增加的早期出现,TW中手臂和同侧大腿摆动之间的相对相位较小。这些发现表明,在OW和TW中,手臂与腿部的协调不同,并且该差异主要归因于特定条件的中央机构的设置,这些中心机构用于缩放步幅频率,控制动态轴向姿势(矢状肩部加速度),并且可能保持肢间同步。如果将来自两个范式的数据用于生理学和病理生理学研究,则对TW和OW中不同的“运动集”的意识至关重要。关键词上肢摆动-肢间耦合-地面行走-跑步机行走

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