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Relationship Between Spatial Variations in Static Skin Deformation and Perceived Roughness of Macroscopic Surfaces

机译:静态皮肤变形的空间变化与宏观表面感知粗糙度的关系

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摘要

The perceived roughness of macroscopic surface features is related to finger skin deformation. For example, skin indentation into surface grooves and the spatial variation in slowly adapting type 1 (SAI) mechanoreceptor activities are linked to the magnitude of subjective roughness. However, the perception of macroscopic roughness has not been directly linked to the spatial variations in skin deformation; therefore, this article investigated the relationship between the subjective roughness magnitude and the spatial spectrum of skin deformation through contact with roughened macroscopic surfaces. Experiments were performed to measure deformation of a finger pad when it statically touched different shaped grating scales. Then, the spatial spectra of skin deformation were computed by applying the Gabor filter with varying spatial selectivity. Some spectral components, particularly those for the spatial period ranging from 2.45-4.00 mm, exhibited a good correlation with the perceived roughness magnitude. When the optimal spatial periods were determined for individual subjects, the spectral components and perceived roughness exhibited a strong linear relationship with an average correlation coefficient of 0.94. Therefore, the amount of spatial variation in finger skin deformation can be linked to the subjective roughness intensities of macroscopic surface features.
机译:宏观表面特征的感知粗糙度与手指皮肤变形有关。例如,皮肤压痕进入表面凹槽和缓慢调整1型(SAI)力高的空间变化(SAI)力型活体与主观粗糙度的幅度相关联。然而,宏观粗糙度的感知尚未直接与皮肤变形的空间变化直接相关;因此,本文通过与粗糙的宏观表面接触来研究主观粗糙度幅度与皮肤变形的空间谱之间的关系。在静态触摸不同形状光栅尺度时,进行实验以测量手指垫的变形。然后,通过将Gabor滤波器施加具有不同的空间选择性来计算皮肤变形的空间光谱。一些光谱分量,特别是对于从2.45-4.00mm的空间周期的谱分量表现出与感知粗糙度幅度的良好相关性。当针对个体受试者确定最佳空间周期时,光谱分量和感知粗糙度表现出具有0.94的平均相关系数的强线性关系。因此,手指皮肤变形的空间变化的量可以与宏观表面特征的主观粗糙度强度连接。

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