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Cross-Modal Sensory Integration of Visual-Tactile Motion Information: Instrument Design and Human Psychophysics

机译:视觉触觉运动信息的跨模态感官整合:仪器设计与人类心理物理学

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摘要

Information obtained from multiple sensory modalities, such as vision and touch, is integrated to yield a holistic percept. As a haptic approach usually involves cross-modal sensory experiences, it is necessary to develop an apparatus that can characterize how a biological system integrates visual-tactile sensory information as well as how a robotic device infers object information emanating from both vision and touch. In the present study, we develop a novel visual-tactile cross-modal integration stimulator that consists of an LED panel to present visual stimuli and a tactile stimulator with three degrees of freedom that can present tactile motion stimuli with arbitrary motion direction, speed, and indentation depth in the skin. The apparatus can present cross-modal stimuli in which the spatial locations of visual and tactile stimulations are perfectly aligned. We presented visual-tactile stimuli in which the visual and tactile directions were either congruent or incongruent, and human observers reported the perceived visual direction of motion. Results showed that perceived direction of visual motion can be biased by the direction of tactile motion when visual signals are weakened. The results also showed that the visual-tactile motion integration follows the rule of temporal congruency of multi-modal inputs, a fundamental property known for cross-modal integration.
机译:从多种感官模式(例如视觉和触摸)获得的信息经过整合以产生整体感。由于触觉方法通常涉及跨模式的感官体验,因此有必要开发一种能够表征生物系统如何整合视觉触觉感官信息以及机器人设备如何推断源自视觉和触摸的物体信息的设备。在本研究中,我们开发了一种新型的视觉-触觉交叉模式整合刺激器,该刺激器由一个LED面板提供视觉刺激,并具有三个自由度的触觉刺激器,可以以任意运动方向,速度和速度呈现触觉运动刺激。皮肤的压痕深度。该设备可以呈现交叉模态刺激,其中视觉刺激和触觉刺激的空间位置被完美对准。我们提出了视觉和触觉方向一致或不一致的视觉触觉刺激,并且人类观察者报告了感知到的运动视觉方向。结果表明,当视觉信号减弱时,感知到的视觉运动方向可能会受到触觉运动方向的影响。结果还表明,视觉-触觉运动集成遵循多模式输入的时间一致性的规则,这是跨模式集成已知的基本属性。

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