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首页> 外文期刊>Perception & psychophysics >Compensatory properties of visual information in the control of isometric force
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Compensatory properties of visual information in the control of isometric force

机译:视觉信息在等距力控制中的补偿特性

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摘要

This experiment investigated the effects of spatial (gain) and temporal (frequency) properties of visual feedback on the control of isometric force output. Participants performed an index finger isometric force production task with five different levels of visual gain and four feedback frequencies. There was a significant effect of gain on mean and standard deviation (SD) of the force output, whereas feedback frequency significantly affected the force SD and root-mean square error. Significant effects of gain and frequency and a gain × frequency interaction on the approximate entropy (ApEn) of the force revealed the effect of visual feedback uncertainty on the force fluctuation dynamics. The combined effects of the spatial and temporal properties of visual feedback on ApEn were approximated by a sum of quadratic functions, indicating their compensatory effect on the informational content of the dynamics of isometric force.
机译:该实验研究了视觉反馈的空间(增益)和时间(频率)特性对等距力输出控制的影响。参与者以五个不同级别的视觉增益和四个反馈频率执行了食指等距力产生任务。增益对力输出的平均值和标准偏差(SD)有显着影响,而反馈频率会显着影响力SD和均方根误差。增益和频率以及增益×频率相互作用对力的近似熵(ApEn)的显着影响揭示了视觉反馈不确定性对力波动动力学的影响。视觉反馈的空间和时间特性对ApEn的组合影响由二次函数的总和来近似,表明它们对等距力动态信息的补偿作用。

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