首页> 美国卫生研究院文献>Journal of Neurophysiology >Neurophysiology of Tactile Perception: A Tribute to Steven Hsiao: Neuromagnetic correlates of adaptive plasticity across the hand-face border in human primary somatosensory cortex
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Neurophysiology of Tactile Perception: A Tribute to Steven Hsiao: Neuromagnetic correlates of adaptive plasticity across the hand-face border in human primary somatosensory cortex

机译:触觉知觉的神经生理学:向萧敬腾致敬:人类主要体感皮层手面部边界的适应性可塑性的神经磁相关性

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摘要

It is well established that permanent or transient reduction of somatosensory inputs, following hand deafferentation or anesthesia, induces plastic changes across the hand-face border, supposedly responsible for some altered perceptual phenomena such as tactile sensations being referred from the face to the phantom hand. It is also known that transient increase of hand somatosensory inputs, via repetitive somatosensory stimulation (RSS) at a fingertip, induces local somatosensory discriminative improvement accompanied by cortical representational changes in the primary somatosensory cortex (SI). We recently demonstrated that RSS at the tip of the right index finger induces similar training-independent perceptual learning across the hand-face border, improving somatosensory perception at the lips (Muret D, Dinse HR, Macchione S, Urquizar C, Farnè A, Reilly KT. Curr Biol 24: R736–R737, 2014). Whether neural plastic changes across the hand-face border accompany such remote and adaptive perceptual plasticity remains unknown. Here we used magnetoencephalography to investigate the electrophysiological correlates underlying RSS-induced behavioral changes across the hand-face border. The results highlight significant changes in dipole location after RSS both for the stimulated finger and for the lips. These findings reveal plastic changes that cross the hand-face border after an increase, instead of a decrease, in somatosensory inputs.
机译:公认的是,在手脱除咖啡因或麻醉后,永久或暂时减少体感输入会在手-脸边界上引起可塑性变化,据认为是造成某些感知变化的原因,例如从脸部转移到幻影手的触感。还已知,通过指尖处的重复体感刺激(RSS),手部体感输入的瞬时增加会引起局部体感判别性改善,并伴随初级体感皮层(SI)的皮质表征变化。我们最近证明,右手食指尖端的RSS可以在手-脸边界上引发类似的与训练无关的知觉学习,从而改善嘴唇的体感知觉(Muret D,Dinse HR,Macchione S,Urquizar C,FarnèA,Reilly KT。Curr Biol 24:R736–R737,2014年)。神经可塑性在手-脸边界的变化是否伴随着这种遥远的和适应性的感知可塑性尚不清楚。在这里,我们使用脑磁图研究了RSS诱导的整个手脸边界行为变化的电生理相关性。结果突出了RSS刺激后的手指和嘴唇的偶极子位置都发生了显着变化。这些发现表明,体感输入的增加而不是减少之后,跨越手部边界的塑性变化。

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