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触觉和本体感觉输入融合对触觉感知的影响。

Effects of fusion between tactile and proprioceptive inputs on tactile perception.

机构信息

School of Biological and Health System Engineering, Arizona State University, Tempe, Arizona, United States of America.

出版信息

PLoS One. 2011 Mar 25;6(3):e18073. doi: 10.1371/journal.pone.0018073.

Abstract

Tactile perception is typically considered the result of cortical interpretation of afferent signals from a network of mechanical sensors underneath the skin. Yet, tactile illusion studies suggest that tactile perception can be elicited without afferent signals from mechanoceptors. Therefore, the extent that tactile perception arises from isomorphic mapping of tactile afferents onto the somatosensory cortex remains controversial. We tested whether isomorphic mapping of tactile afferent fibers onto the cortex leads directly to tactile perception by examining whether it is independent from proprioceptive input by evaluating the impact of different hand postures on the perception of a tactile illusion across fingertips. Using the Cutaneous Rabbit Effect, a well studied illusion evoking the perception that a stimulus occurs at a location where none has been delivered, we found that hand posture has a significant effect on the perception of the illusion across the fingertips. This finding emphasizes that tactile perception arises from integration of perceived mechanical and proprioceptive input and not purely from tactile interaction with the external environment.

摘要

触觉感知通常被认为是皮质对皮肤下机械传感器网络传入信号的解释的结果。然而,触觉错觉研究表明,即使没有机械感受器的传入信号,也可以产生触觉感知。因此,触觉感知是否源于触觉传入纤维与躯体感觉皮层的同型映射仍然存在争议。我们通过评估不同手姿势对整个指尖触觉错觉感知的影响,来检验触觉传入纤维在皮层上的同型映射是否直接导致触觉感知,从而检验其是否独立于本体感受输入。通过使用已被深入研究的“皮肤兔效应”,即一种可以产生刺激出现在没有被给予的位置的错觉的方法,我们发现手姿势对手指整个区域的错觉感知有显著影响。这一发现强调了触觉感知是来自于对感知到的机械和本体感受输入的整合,而不仅仅是来自于与外部环境的触觉相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d033/3064587/2205d17549ee/pone.0018073.g001.jpg

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