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摩擦调制纹理的检测受振动触觉灵敏度的限制。

Detection of Friction-Modulated Textures is Limited by Vibrotactile Sensitivity.

出版信息

IEEE Trans Haptics. 2020 Jul-Sep;13(3):542-551. doi: 10.1109/TOH.2020.2985364. Epub 2020 Apr 6.

Abstract

Modulation of the frictional force of a fingertip sliding over a surface-haptic device can produce compelling sensations of texture and relief. The virtual sensation is particularly apparent and feel as fixed in space if the stimulus is rigorously correlated with the displacement of the finger. While frictional textures tactually resemble their real counterparts, some exploratory conditions under which the sharpness of the texture declines exist. We postulate that this decline in sharpness is caused by the perceptual limitation of the attempt to interpret the variation in friction as an out-of-plane sinusoidal topography. To investigate these questions, we measured the detection thresholds of sinusoidal friction-modulated gratings for a wide range of spatial periods explored at two different speeds. We compared the results with the detection thresholds, reported in the literature, of real gratings and vibrotactile stimuli. We found that the detection of spatial friction-modulated textures does not follow the same trend as that of real textures but is more similar to the vibrotactile rendering, which is strongly influenced by the exploratory speed. This article provides a better understanding of the perception of friction-modulated textures and provides insight into how to design impactful stimuli on surface-haptic devices.

摘要

指尖在表面触觉设备上滑动时,摩擦力的调节可以产生强烈的质感和浮雕感。如果刺激与手指的位移严格相关,那么虚拟感觉特别明显,并且感觉固定在空间中。虽然摩擦质感在触觉上类似于它们的真实对应物,但在某些探索性条件下,质感的清晰度会下降。我们假设这种清晰度的下降是由于试图将摩擦力的变化解释为平面外正弦形貌的感知限制造成的。为了研究这些问题,我们测量了在两种不同速度下探索的广泛空间周期的正弦摩擦调制光栅的检测阈值。我们将结果与文献中报道的真实光栅和振动触觉刺激的检测阈值进行了比较。我们发现,空间摩擦调制纹理的检测趋势与真实纹理不同,但更类似于振动触觉呈现,这强烈受到探索速度的影响。本文提供了对摩擦调制纹理感知的更好理解,并深入了解如何在表面触觉设备上设计有影响力的刺激。

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