Moungou Athanasia, Thonnard Jean-Louis, Mouraux André
Institute of Neuroscience (IoNS), Université catholique de Louvain (UCL), Brussels, Belgium.
Cliniques Universitaires Saint-Luc, Physical and Rehabilitation Department, Université catholique de Louvain, Brussels, Belgium.
Sci Rep. 2016 Feb 8;6:20738. doi: 10.1038/srep20738.
When sliding our fingertip against a textured surface, complex vibrations are produced in the skin. It is increasingly recognised that the neural transduction and processing of these vibrations plays an important role in the dynamic tactile perception of textures. The aim of the present study was to develop a novel means to tag the cortical activity related to the processing of these vibrations, by periodically modulating the amplitude of texture exploration-induced vibrations such as to record a steady-state evoked potential (SS-EP). The EEG was recorded while the right index fingertip was scanned against four different textures using a constant exploration velocity. Amplitude modulation of the elicited vibrations was achieved by periodically modulating the force applied against the finger. Frequency analysis of the recorded EEG signals showed that modulation of the vibrations induced by the fingertip-texture interactions elicited an SS-EP at the frequency of modulation (3 Hz) as well as its second harmonic (6 Hz), maximal over parietal regions contralateral to the stimulated side. Textures generating stronger vibrations also generated SS-EPs of greater magnitude. Our results suggest that frequency tagging using SS-EPs can be used to isolate and explore the brain activity related to the tactile exploration of natural textures.
当我们用指尖在有纹理的表面滑动时,皮肤会产生复杂的振动。人们越来越认识到,这些振动的神经传导和处理在对纹理的动态触觉感知中起着重要作用。本研究的目的是开发一种新方法,通过周期性地调制纹理探索引起的振动幅度来标记与这些振动处理相关的皮层活动,以便记录稳态诱发电位(SS-EP)。在使用恒定探索速度让右手食指指尖扫描四种不同纹理的同时记录脑电图。通过周期性地调制施加在手指上的力来实现对诱发振动的幅度调制。对记录的脑电图信号进行频率分析表明,指尖与纹理相互作用引起的振动调制在调制频率(3Hz)及其二次谐波(6Hz)处诱发了一个SS-EP,在受刺激侧对侧的顶叶区域最为明显。产生更强振动的纹理也会产生幅度更大的SS-EP。我们的结果表明,使用SS-EP进行频率标记可用于分离和探索与自然纹理触觉探索相关的大脑活动。