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人体步态与机器振荡器系统同步的幅度和频率。

Amplitude and frequency of human gait synchronization with a machine oscillator system.

作者信息

Schroeder Ryan T, Croft James L, Bertram John E A

机构信息

Biomedical Engineering, University of Calgary, Calgary, AB, Canada.

McCaig Institute for Bone and Joint Health, University of Calgary, Calgary, AB, Canada.

出版信息

Sci Rep. 2025 Jan 10;15(1):1629. doi: 10.1038/s41598-025-85202-z.

Abstract

Humans sometimes synchronize their steps to mechanical oscillations in the environment (e.g., when walking on a swaying bridge or with a wearable robot). Previous studies have discovered discrete frequencies and/or amplitudes where individuals spontaneously synchronize to external oscillations, but these parameters are often chosen arbitrarily or for convenience of a successful experiment and are sparsely sampled due to time constraints on subject availability. As a result, the parameter space under which human gait synchronization occurs is still relatively underexplored. Here we systematically measure synchronization over a broad range of parameters in machine oscillations, applied vertically near the body center of mass during walking. Two complementary experiments were utilized to characterize the amplitudes and frequencies where subjects' gait matched the oscillation frequency within ± 0.02 Hz for at least 80% of 20 consecutive steps (i.e., synchronization). Individuals were found to synchronize at lower amplitudes and in less time when the oscillation frequency was nearer their baseline step frequency, as well as over a broader range of frequencies during larger oscillation amplitudes. Subjects also had a greater tendency to synchronize with oscillation frequencies below (rather than above) their baseline step frequencies. The results of this study provide a comprehensive mapping of parameters where synchronization occurs and could inform the design of exoskeletons, rehabilitation devices and other gait-assistive technologies.

摘要

人类有时会使自己的步伐与环境中的机械振荡同步(例如,在摇晃的桥上行走或与可穿戴机器人一起行走时)。先前的研究已经发现了个体自发与外部振荡同步的离散频率和/或振幅,但这些参数通常是随意选择的,或者是为了成功实验的便利性,并且由于受试者可用性的时间限制而采样稀疏。因此,人类步态同步发生的参数空间仍相对未被充分探索。在这里,我们系统地测量了在步行过程中靠近身体质心垂直施加的机器振荡的广泛参数范围内的同步情况。利用两个互补实验来表征在连续20步中至少80%的步数内受试者步态与振荡频率在±0.02赫兹内匹配(即同步)时的振幅和频率。结果发现,当振荡频率更接近他们的基线步频时,个体在较低振幅下同步所需时间更短,并且在较大振荡振幅期间,个体在更宽的频率范围内同步。受试者也更倾向于与低于(而非高于)其基线步频的振荡频率同步。这项研究的结果提供了同步发生的参数的全面映射,并可为外骨骼、康复设备和其他步态辅助技术的设计提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5386/11723955/74d905adb8e1/41598_2025_85202_Fig1_HTML.jpg

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