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Effect of fingerprints orientation on skin vibrations during tactile exploration of textured surfaces

机译:指纹取向对质感表面触觉探索过程中皮肤振动的影响

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摘要

In humans, the tactile perception of fine textures is mediated by skin vibrations when scanning the surface with the fingertip. These vibrations are encoded by specific mechanoreceptors, Pacinian corpuscules (PCs), located about 2 mm below the skin surface. In a recent article, we performed experiments using a biomimetic sensor which suggest that fingerprints (epidermal ridges) may play an important role in shaping the subcutaneous stress vibrations in a way which facilitates their processing by the PC channel. Here we further test this hypothesis by directly recording the modulations of the fingerpad/substrate friction force induced by scanning an actual fingertip across a textured surface. When the fingerprints are oriented perpendicular to the scanning direction, the spectrum of these modulations shows a pronounced maximum around the frequency v/λ, where v is the scanning velocity and λ the fingerprints period. This simple biomechanical result confirms the relevance of our previous finding for human touch.
机译:在人类中,当用指尖扫描表面时,皮肤振动会介导精细质地的触觉感知。这些振动由位于皮肤表面以下约2 mm的特定机械感受器Pacinian corpuscules(PC)编码。在最近的一篇文章中,我们使用仿生传感器进行了实验,结果表明指纹(表皮脊)可能在塑造皮下应力振动方面起着重要作用,其方式有助于PC通道对其进行处理。在这里,我们通过直接记录通过在纹理表面上扫描实际指尖而产生的指垫/基板摩擦力的调制,进一步检验该假设。当指纹垂直于扫描方向定向时,这些调制的频谱在频率v /λ附近显示出明显的最大值,其中v是扫描速度,λ是指纹周期。这个简单的生物力学结果证实了我们先前的发现与人类接触的相关性。

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