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Reduced effects of tendon vibration with increased task demand during active cyclical ankle movements

机译:在主动周期性的踝关节运动过程中随着任务需求的增加肌腱振动的影响减小

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摘要

Tendon vibration can alter proprioceptive feedback, one source of sensory information which humans can use to produce accurate movements. However, the effects of tendon vibration during functional movement vary depending on the task. For example, ankle tendon vibration has considerably smaller effects during walking than standing posture. The purpose of this study was to test whether the effects of ankle tendon vibration are predictably influenced by the mechanical demands of a task, as quantified by peak velocity. Twelve participants performed symmetric, cyclical ankle plantarflexion/dorsiflexion movements while lying prone with their ankle motion unconstrained. The prescribed movement period (1s, 3s) and peak-to-peak amplitude (10°, 15°, 20°) were varied across trials; shorter movement periods or larger amplitudes increased the peak velocity. In some trials, vibration was continuously and simultaneously applied to the right ankle plantarflexor and dorsiflexor tendons, while the left ankle tendons were never vibrated. The vibration frequency (40, 80, 120, 160 Hz) was varied across trials. During trials without vibration, participants accurately matched the movement of their ankles. The application of 80 Hz vibration to the right ankle tendons significantly reduced the amplitude of right ankle movement. However, the effect of vibration was smaller during more mechanically demanding (i.e. higher peak velocity) movements. Higher vibration frequencies had larger effects on movement accuracy, possibly due to parallel increases in vibration amplitude. These results demonstrate that the effects of ankle tendon vibration are dependent on the mechanical demand of the task being performed, but cannot definitively identify the underlying physiological mechanism.
机译:肌腱振动会改变本体感觉反馈,这是人类可以用来产生精确运动的一种感官信息来源。但是,功能性运动过程中肌腱振动的影响因任务而异。例如,脚踝肌腱振动在步行过程中的影响比站立姿势要小得多。这项研究的目的是测试脚踝肌腱振动的影响是否可预测地受到任务的机械需求的影响,如峰值速度所量化的。 12名参与者进行了对称的周期性脚踝plant屈/背屈运动,而他们的脚踝运动不受限制地俯卧。在整个试验中,规定的运动周期(1s,3s)和峰峰幅度(10°,15°,20°)有所不同;较短的运动周期或较大的振幅会增加峰值速度。在一些试验中,振动同时连续施加于右脚踝plant屈肌和背屈肌腱,而左脚踝肌腱从未振动。各个试验的振动频率(40、80、120、160 Hz)不同。在没有振动的试验中,参与者可以准确地匹配其脚踝的运动。在右脚踝肌腱上施加80 Hz振动会大大降低右脚踝运动的幅度。但是,在机械要求更高的运动(即更高的峰值速度)运动期间,振动的影响较小。较高的振动频率可能会对振动幅度产生平行影响,因此对运动精度产生较大影响。这些结果表明,脚踝肌腱振动的影响取决于所执行任务的机械要求,但无法确定潜在的生理机制。

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