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Broad-band Gaussian noise is most effective in improving motor performance and is most pleasant

机译:宽带高斯噪声对改善电机性能最有效并且最令人愉快

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摘要

Modern attempts to improve human performance focus on stochastic resonance (SR). SR is a phenomenon in non-linear systems characterized by a response increase of the system induced by a particular level of input noise. Recently, we reported that an optimum level of 0–15 Hz Gaussian noise applied to the human index finger improved static isometric force compensation. A possible explanation was a better sensorimotor integration caused by increase in sensitivity of peripheral receptors and/or of internal SR. The present study in 10 subjects compares SR effects in the performance of the same motor task and on pleasantness, by applying three Gaussian noises chosen on the sensitivity of the fingertip receptors (0–15 Hz mostly for Merkel receptors, 250–300 Hz for Pacini corpuscles and 0–300 Hz for all). We document that only the 0–300 Hz noise induced SR effect during the transitory phase of the task. In contrast, the motor performance was improved during the stationary phase for all three noise frequency bandwidths. This improvement was stronger for 0–300 Hz and 250–300 Hz than for 0–15 Hz noise. Further, we found higher degree of pleasantness for 0–300 Hz and 250–300 Hz noise bandwidths than for 0–15 Hz. Thus, we show that the most appropriate Gaussian noise that could be used in haptic gloves is the 0–300 Hz, as it improved motor performance during both stationary and transitory phases. In addition, this noise had the highest degree of pleasantness and thus reveals that the glabrous skin can also forward pleasant sensations.
机译:现代改善人类绩效的尝试集中在随机共振(SR)上。 SR是非线性系统中的一种现象,其特征在于特定输入噪声水平引起的系统响应增加。最近,我们报道了将一个最佳水平的0-15 Hz高斯噪声应用于人的食指可改善静态等距力补偿。一个可能的解释是外围受体和/或内部SR的敏感性增加导致更好的感觉运动整合。本研究在10位受试者中,通过对指尖感受器的灵敏度选择3种高斯噪声(在0–15 Hz的默克尔感受器,在250–300 Hz的Pacini感受器中)应用三种高斯噪声,比较了在相同运动任务和愉悦感方面的SR效果。小球和所有0-300 Hz)。我们记录了在任务过渡阶段,只有0–300 Hz的噪声会引起SR效应。相反,在所有三个噪声频率带宽的固定阶段,电动机的性能都得到了改善。对于0–300 Hz和250–300 Hz,此改善要强于0–15 Hz噪声。此外,我们发现0–300 Hz和250–300 Hz噪声带宽的舒适度要比0–15 Hz高。因此,我们表明,可以在触觉手套中使用的最合适的高斯噪声是0–300 Hz,因为它可以改善静止和过渡阶段的运动性能。另外,这种噪音具有最高程度的愉悦感,因此表明无毛的皮肤也可以传递愉悦的感觉。

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