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Cutaneous Wave Propagation Shapes Tactile Motion: Evidence from Air-Coupled Ultrasound

机译:皮肤波传播塑造触觉运动:空气耦合超声的证据。

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Tactile stimulation of the skin excites cutaneous waves that travel tens of centimeters, but the implications for haptic engineering and perception are not well understood. We present evidence from optical vibrometry that tactile motion cues delivered via air-coupled ultrasound excite complex spatiotemporal wave fields in the hand. We distinguished two physical regimes based on the ratio of the motion speed to the cutaneous wave speed. At low speeds (1-4 m/s), waves generated by a moving stimulus propagated to similar distances in all directions. At high speeds (4-15 m/s), waves in the direction of motion were compressed. We also studied tactile motion perception at these speeds, which were faster than those used in prior studies. Motion sensitivity was impaired when waves were inhibited in front of the moving stimulus. This occurred for motion at high speeds and across disconnected skin areas. Together, our findings suggest that tactile motion perception is aided by waves propagating in the skin. This paper presents the first time-resolved observations of cutaneous responses to focused ultrasound, and contributes practical knowledge for the use of tactile motion and mid-air haptic feedback.
机译:皮肤的触觉刺激会激发行进数十厘米的皮肤波,但是对于触觉工程和感知的含义尚不十分清楚。我们从光学振动测量法中获得的证据表明,通过空气耦合超声传递的触觉运动提示会激发手中复杂的时空波场。我们根据运动速度与皮肤波速之比来区分两种物理状态。在低速(1-4 m / s)下,由移动刺激产生的波在所有方向上传播到相似的距离。在高速(4-15 m / s)下,运动方向的波被压缩。我们还以这些速度研究了触觉运动感知,这些速度比以前的研究中所使用的速度要快。当在运动刺激之前抑制波时,运动灵敏度会受到损害。发生这种情况的原因是高速运动并跨越不相连的皮肤区域。在一起,我们的发现表明,触觉运动感知是由在皮肤中传播的波来辅助的。本文介绍了皮肤对聚焦超声反应的首次时间分辨观察,并为使用触觉运动和空中触觉反馈提供了实用知识。

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