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The Predictive Perception of Dynamic Vibrotactile Stimuli Applied to the Fingertip*

机译:施加到指尖*动态振动触觉刺激的预测感知

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摘要

Because the world is dynamic in nature, sensory predictions are invariably important to successful interaction with it. The current experiment examined the influence of dynamic frequency information on the associated perceptions of simple geometric features. Participants were presented with short durations of vibrotactile stimulation to their fingertip across an array of oscillating pins. A pair of frequencies was used to simulate simple tactile edges across the array surface. Over a relatively short `shift' duration, the frequencies at which these regions vibrated often switched spatial locations. Participants were required to indicate which of three possible shapes (left edge, right edge, or none) they experienced. The results were consistent with a predictive model of perceptual decision making in that responses were generally biased by the initial rather than the final configuration. Further, performance accuracy was maximized at the intermediate, 500-ms shift duration for a 10-158 Hz frequency pairing. This indicated that performance may be enhanced when larger frequency differences are used in concert with shift durations consistent with natural, exploratory movements.
机译:因为世界的性质是动态的,感官预测总是很重要,可以与它成功互动。目前的实验检测了动态频率信息对简单几何特征的相关看法的影响。参与者在横跨振动销阵列的阵列上呈现给他们的指尖刺激的短持续时间。使用一对频率来模拟阵列表面上的简单触觉边缘。在相对较短的“换档”持续时间内,这些区域振动的频率通常是切换空间位置。参与者被要求表明他们经历过三种可能的三种可能的形状(左边缘,右边缘或没有)。结果与感知决策的预测模型一致,因为响应通常由初始而不是最终配置偏置。此外,对于10-158Hz频率配对的中间,500-MS偏移持续时间,性能精度最大化。这表明,当使用与自然探索运动一致的换档持续态度使用较大的频率差异时,可以提高性能。

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