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通过动态手动接触或视觉提示进行步态参数控制计时。

Gait parameter control timing with dynamic manual contact or visual cues.

作者信息

Rabin Ely, Shi Peter, Werner William

机构信息

New York Institute of Technology College of Osteopathic Medicine, Old Westbury, New York;

SUNY Downstate Medical Center, Brooklyn, New York; and.

出版信息

J Neurophysiol. 2016 Jun 1;115(6):2880-92. doi: 10.1152/jn.00670.2015. Epub 2016 Mar 2.

Abstract

We investigated the timing of gait parameter changes (stride length, peak toe velocity, and double-, single-support, and complete step duration) to control gait speed. Eleven healthy participants adjusted their gait speed on a treadmill to maintain a constant distance between them and a fore-aft oscillating cue (a place on a conveyor belt surface). The experimental design balanced conditions of cue modality (vision: eyes-open; manual contact: eyes-closed while touching the cue); treadmill speed (0.2, 0.4, 0.85, and 1.3 m/s); and cue motion (none, ±10 cm at 0.09, 0.11, and 0.18 Hz). Correlation analyses revealed a number of temporal relationships between gait parameters and cue speed. The results suggest that neural control ranged from feedforward to feedback. Specifically, step length preceded cue velocity during double-support duration suggesting anticipatory control. Peak toe velocity nearly coincided with its most-correlated cue velocity during single-support duration. The toe-off concluding step and double-support durations followed their most-correlated cue velocity, suggesting feedback control. Cue-tracking accuracy and cue velocity correlations with timing parameters were higher with the manual contact cue than visual cue. The cue/gait timing relationships generalized across cue modalities, albeit with greater delays of step-cycle events relative to manual contact cue velocity. We conclude that individual kinematic parameters of gait are controlled to achieve a desired velocity at different specific times during the gait cycle. The overall timing pattern of instantaneous cue velocities associated with different gait parameters is conserved across cues that afford different performance accuracies. This timing pattern may be temporally shifted to optimize control. Different cue/gait parameter latencies in our nonadaptation paradigm provide general-case evidence of the independent control of gait parameters previously demonstrated in gait adaptation paradigms.

摘要

我们研究了步态参数变化(步长、峰值脚趾速度以及双支撑、单支撑和完整步长持续时间)对步态速度的控制时机。11名健康参与者在跑步机上调整步态速度,以保持他们与前后摆动提示物(传送带上的一个位置)之间的距离恒定。实验设计平衡了提示方式(视觉:睁眼;手动接触:闭眼同时触摸提示物)、跑步机速度(0.2、0.4、0.85和1.3米/秒)以及提示物运动(无、在0.09、0.11和0.18赫兹时±10厘米)的条件。相关性分析揭示了步态参数与提示物速度之间的一些时间关系。结果表明神经控制范围从前馈到反馈。具体而言,在双支撑持续时间内步长先于提示物速度,表明存在预期控制。在单支撑持续时间内,峰值脚趾速度几乎与其最相关的提示物速度同时出现。离地结束步和双支撑持续时间跟随其最相关的提示物速度,表明存在反馈控制。与视觉提示相比,手动接触提示的提示跟踪准确性以及提示速度与时间参数的相关性更高。提示/步态时间关系在不同提示方式中具有普遍性,尽管相对于手动接触提示物速度,步周期事件的延迟更大。我们得出结论,步态的各个运动学参数在步态周期的不同特定时间被控制以实现期望的速度。与不同步态参数相关的瞬时提示物速度的总体时间模式在提供不同性能准确性的提示物之间是保守的。这种时间模式可能会在时间上发生偏移以优化控制。我们非适应范式中不同的提示/步态参数延迟为先前在步态适应范式中证明的步态参数的独立控制提供了一般情况的证据。

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