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Control of Movement: Force illusions and drifts observed during muscle vibration

机译:运动控制:在肌肉振动过程中观察到力错觉和漂移

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摘要

We explored predictions of a scheme that views position and force perception as a result of measuring proprioceptive signals within a reference frame set by ongoing efferent process. In particular, this hypothesis predicts force illusions caused by muscle vibration and mediated via changes in both afferent and efferent components of kinesthesia. Healthy subjects performed accurate steady force production tasks by pressing with the four fingers of one hand (the task hand) on individual force sensors with and without visual feedback. At various times during the trials, subjects matched the perceived force using the other hand. High-frequency vibration was applied to one or both of the forearms (over the hand and finger extensors). Without visual feedback, subjects showed a drop in the task hand force, which was significantly smaller under the vibration of that forearm. Force production by the matching hand was consistently higher than that of the task hand. Vibrating one of the forearms affected the matching hand in a manner consistent with the perception of higher magnitude of force produced by the vibrated hand. The findings were consistent between the dominant and nondominant hands. The effects of vibration on both force drift and force mismatching suggest that vibration led to shifts in both signals from proprioceptors and the efferent component of perception, the referent coordinate and/or coactivation command. The observations fit the hypothesis on combined perception of kinematic-kinetic variables with little specificity of different groups of peripheral receptors that all contribute to perception of forces and coordinates.>NEW & NOTEWORTHY We show that vibration of hand/finger extensors produces consistent errors in finger force perception. Without visual feedback, finger force drifted to lower values without a drift in the matching force produced by the other hand; hand extensor vibration led to smaller finger force drift. The findings fit the scheme with combined perception of kinematic-kinetic variables and suggest that vibration leads to consistent shifts of the referent coordinate and, possibly, of coactivation command to the effector.
机译:我们探索了一种方案的预测,该方案通过在正在进行的传出过程设置的参考帧内测量本体感受信号来查看位置和力的感知。特别地,该假设预测了由肌肉振动引起的力幻觉,并且通过运动感觉的传入和传出成分的变化来介导。健康的受试者通过用一只手的四根手指(任务手)在有力或无力视觉反馈的情况下用力压在各个力传感器上来执行精确的稳定力产生任务。在试验期间的不同时间,受试者用另一只手匹配感觉到的力量。对前臂中的一个或两个(在手和手指伸肌上)施加高频振动。没有视觉反馈,受试者的工作手力下降,在前臂的振动下明显减小。匹配手的力量生产始终高于任务手。振动的前臂之一以与感觉到由振动的手产生的更大的力的感觉一致的方式影响匹配的手。研究结果在优势手和非优势手之间是一致的。振动对力漂移和力失配的影响表明,振动会导致来自本体感受器的信号以及感知的传出成分,参考坐标和/或共同激活命令的移动。这些观察结果符合以下假设:对运动学运动学变量进行综合感知,而不同组的外围受体的特异性却很少,这些都有助于感知力和坐标。> NEW&NOTEWORTHY 我们证明了手/手指的振动伸肌在手指力感知中产生一致的错误。没有视觉反馈,手指的力会漂移到较低的值,而另一只手产生的匹配力不会漂移。手伸肌的振动导致较小的手指力漂移。这些发现使该方案具有运动学-运动学变量的综合感觉,并表明振动会导致参考坐标的一致移动,并且可能导致对效应子的共同激活命令的一致移动。

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