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An Adaptation-Induced Repulsion Illusion in Tactile Spatial Perception

机译:触觉空间知觉中的适应诱导的排斥幻觉

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Following focal sensory adaptation, the perceived separation between visual stimuli that straddle the adapted region is often exaggerated. For instance, in the tilt aftereffect illusion, adaptation to tilted lines causes subsequently viewed lines with nearby orientations to be perceptually repelled from the adapted orientation. Repulsion illusions in the nonvisual senses have been less studied. Here, we investigated whether adaptation induces a repulsion illusion in tactile spatial perception. In a two-interval forced-choice task, participants compared the perceived separation between two point-stimuli applied on the forearms successively. Separation distance was constant on one arm (the reference) and varied on the other arm (the comparison). In Experiment 1, we took three consecutive baseline measurements, verifying that in the absence of manipulation, participants’ distance perception was unbiased across arms and stable across experimental blocks. In Experiment 2, we vibrated a region of skin on the reference arm, verifying that this focally reduced tactile sensitivity, as indicated by elevated monofilament detection thresholds. In Experiment 3, we applied vibration between the two reference points in our distance perception protocol and discovered that this caused an illusory increase in the separation between the points. We conclude that focal adaptation induces a repulsion aftereffect illusion in tactile spatial perception. The illusion provides clues as to how the tactile system represents spatial information. The analogous repulsion aftereffects caused by adaptation in different stimulus domains and sensory systems may point to fundamentally similar strategies for dynamic sensory coding.
机译:在局灶性感觉适应之后,跨越适应区域的视觉刺激之间的感知间隔通常被放大。例如,在倾斜后效应幻觉中,对倾斜线的适应使得随后观察到的具有附近取向的线从适应的取向被感知地排斥。在非视觉意义上的排斥幻象已经很少研究了。在这里,我们调查了适应性是否在触觉空间知觉中引起排斥幻想。在两次间隔的强制选择任务中,参与者比较了连续施加在前臂上的两个点刺激之间的感知间隔。一只手臂(参考)的分离距离恒定,另一只手臂(比较)的分离距离变化。在实验1中,我们进行了三个连续的基线测量,验证了在没有进行任何操作的情况下,参与者的距离感知在各个手臂之间没有偏见,并且在各个实验块之间均保持稳定。在实验2中,我们振动了参考臂上的皮肤区域,验证了这会降低触觉灵敏度,如单丝检测阈值升高所表明的。在实验3中,我们在距离感知协议中的两个参考点之间应用了振动,并发现这导致了点之间的间隔增加了幻觉。我们得出结论,焦点适应在触觉空间知觉中引起排斥后效幻觉。幻觉提供有关触觉系统如何表示空间信息的线索。由在不同刺激域和感觉系统中的适应引起的类似的排斥后效应可能指向动态感觉编码的基本相似的策略。

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