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The role of vibration in tactile speed perception

机译:振动在触觉速度感知中的作用

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The relative motion between the surface of an object and our fingers produces patterns of skin deformation such as stretch, indentation, and vibrations. In this study, we hypothesized that motion-induced vibrations are combined with other tactile cues for the discrimination of tactile speed. Specifically, we hypothesized that vibrations provide a critical cue to tactile speed on surfaces lacking individually detectable features like dots or ridges. Thus masking vibrations unrelated to slip motion should impair the discriminability of tactile speed, and the effect should be surface-dependent. To test this hypothesis, we measured the precision of participants in discriminating the speed of moving surfaces having either a fine or a ridged texture, while adding masking vibratory noise in the working range of the fast-adapting mechanoreceptive afferents. Vibratory noise significantly reduced the precision of speed discrimination, and the effect was much stronger on the fine-textured than on the ridged surface. On both surfaces, masking vibrations at intermediate frequencies of 64 Hz (65-mu m peak-to-peak amplitude) and 128 Hz (10 mu m) had the strongest effect, followed by high-frequency vibrations of 256 Hz (1 mu m) and low-frequency vibrations of 32 Hz (50 and 25 mu m). These results are consistent with our hypothesis that slip-induced vibrations concur to the discrimination of tactile speed.
机译:物体表面和手指之间的相对运动会产生皮肤变形,例如拉伸,凹陷和振动。在这项研究中,我们假设运动引起的振动与其他触觉提示相结合以区分触觉速度。具体来说,我们假设振动为缺乏点或山脊等可单独检测特征的表面上的触觉速度提供了关键提示。因此,与滑移无关的掩盖振动会削弱触觉速度的可分辨性,并且效果应取决于表面。为了检验该假设,我们测量了参与者在区分具有精细或隆起纹理的移动表面的速度时的精度,同时在快速适应的机械感受传入器的工作范围内添加了掩盖的振动噪声。振动噪声显着降低了速度判别的精度,并且对细纹的效果比对脊形表面的效果要强得多。在两个表面上,以64 Hz(峰峰值振幅为65μm)和128Hz(10μm)的中间频率掩盖振动的效果最强,其次是256Hz(1μm)的高频振动。 )和32 Hz(50和25μm)的低频振动。这些结果与我们的假说一致,即滑移引起的振动与触觉速度的区分有关。

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