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行走和跑步中的节奏调制:步幅还是步频?

Cadence Modulation in Walking and Running: Pacing Steps or Strides?

作者信息

Nijs Anouk, Roerdink Melvyn, Beek Peter J

机构信息

Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, van der Boechorststraat 7-9, 1081 BT Amsterdam, The Netherlands.

出版信息

Brain Sci. 2020 May 1;10(5):273. doi: 10.3390/brainsci10050273.

Abstract

A change in cadence during walking or running might be indicated for a variety of reasons, among which mobility improvement and injury prevention. In a within-subject study design, we examined whether walking or running cadences are modulated best by means of step-based or stride-based auditory pacing. Sixteen experienced runners walked and ran on a treadmill while synchronizing with step-based and stride-based pacing at slow, preferred and fast pacing frequencies in synchronization-perturbation and synchronization-continuation conditions. We quantified the variability of the relative phase between pacing cues and footfalls and the responses to perturbations in the pacing signal as measures of coordinative stability; the more stable the auditory-motor coordination, the stronger the modulating effect of pacing. Furthermore, we quantified the deviation from the prescribed cadence after removal of the pacing signal as a measure of internalization of this cadence. Synchronization was achieved less often in running, especially at slow pacing frequencies. If synchronization was achieved, coordinative stability was similar, and the paced cadence was well internalized for preferred and fast pacing frequencies. Step-based pacing led to more stable auditory-motor coordination than stride-based pacing in both walking and running. We therefore concluded that step-based auditory pacing deserves preference as a means to modulate cadence in walking and running.

摘要

步行或跑步时节奏的变化可能由多种原因引起,其中包括改善运动能力和预防损伤。在一项受试者内研究设计中,我们研究了基于步数或基于步幅的听觉节奏引导是否能最佳地调节步行或跑步节奏。16名有经验的跑步者在跑步机上行走和跑步,同时在同步-扰动和同步-持续条件下,以慢、偏好和快的节奏频率与基于步数和基于步幅的节奏引导同步。我们量化了节奏提示与脚步落地之间相对相位的变异性以及对节奏信号扰动的反应,以此作为协调稳定性的指标;听觉-运动协调越稳定,节奏引导的调节效果越强。此外,我们量化了去除节奏信号后与规定节奏的偏差,以此作为该节奏内化程度的指标。跑步时同步的实现频率较低,尤其是在慢节奏频率下。如果实现了同步,协调稳定性相似,并且对于偏好和快的节奏频率,节奏引导的节奏能很好地内化。在步行和跑步中,基于步数的节奏引导比基于步幅的节奏引导导致更稳定的听觉-运动协调。因此,我们得出结论,基于步数的听觉节奏引导作为调节步行和跑步节奏的一种手段值得优先选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/276f/7288070/dbd5fb4ac555/brainsci-10-00273-g001.jpg

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