Multisensory integration and motor resonance in the primary motor cortex

IF 3.2 2区 心理学 Q1 BEHAVIORAL SCIENCES Cortex Pub Date : 2024-08-22 DOI:10.1016/j.cortex.2024.07.015
Serena Giurgola , Emanuele Lo Gerfo , Alessandro Farnè , Alice C. Roy , Nadia Bolognini
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Abstract

Humans are endowed with a motor system that resonates to speech sounds, but whether concurrent visual information from lip movements can improve speech perception at a motor level through multisensory integration mechanisms remains unknown. Therefore, the aim of the study was to explore behavioral and neurophysiological correlates of multisensory influences on motor resonance in speech perception. Motor-evoked potentials (MEPs), by single pulse transcranial magnetic stimulation (TMS) applied over the left lip muscle (orbicularis oris) representation in the primary motor cortex, were recorded in healthy participants during the presentation of syllables in unimodal (visual or auditory) or multisensory (audio-visual) congruent or incongruent conditions. At the behavioral level, subjects showed better syllable identification in the congruent audio-visual condition as compared to the unimodal conditions, hence showing a multisensory enhancement effect. Accordingly, at the neurophysiological level, increased MEPs amplitudes were found in the congruent audio-visual condition, as compared to the unimodal ones. Incongruent audio-visual syllables resulting in illusory percepts did not increase corticospinal excitability, which in fact was comparable to that induced by the real perception of the same syllable. In conclusion, seeing and hearing congruent bilabial syllables increases the excitability of the lip representation in the primary motor cortex, hence documenting that multisensory integration can facilitate speech processing by influencing motor resonance. These findings highlight the modulation role of multisensory processing showing that it can boost speech perception and that multisensory interactions occur not only within higher-order regions, but also within primary motor areas, as shown by corticospinal excitability changes.

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初级运动皮层的多感官整合与运动共振
人类拥有能与语音产生共鸣的运动系统,但同时从嘴唇运动中获得的视觉信息是否能通过多感官整合机制在运动水平上改善语音感知仍是未知数。因此,本研究旨在探索多感官对言语感知中运动共振影响的行为学和神经生理学相关性。研究人员在单模态(视觉或听觉)或多模态(视听)一致或不一致的条件下播放音节时,通过单脉冲经颅磁刺激(TMS)在初级运动皮层的左唇部肌肉(口轮匝肌)上记录运动诱发电位(MEPs)。在行为层面上,与单模态条件相比,受试者在视听一致条件下表现出更好的音节识别能力,从而显示出多感官增强效应。相应地,在神经生理学层面上,与单模态条件相比,在视听一致条件下,受试者的 MEPs 振幅增大。不一致的视听音节导致的虚幻感知并没有增加皮质神经元的兴奋性,事实上,这种兴奋性与真实感知相同音节时所引起的兴奋性相当。总之,看到和听到一致的双唇音节会增加初级运动皮层中唇表征的兴奋性,从而证明多感官整合可以通过影响运动共振来促进语音处理。这些发现凸显了多感官处理的调节作用,表明多感官处理可促进言语感知,而且多感官相互作用不仅发生在高阶区域,也发生在初级运动区域,皮质脊髓兴奋性变化就表明了这一点。
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来源期刊
Cortex
Cortex 医学-行为科学
CiteScore
7.00
自引率
5.60%
发文量
250
审稿时长
74 days
期刊介绍: CORTEX is an international journal devoted to the study of cognition and of the relationship between the nervous system and mental processes, particularly as these are reflected in the behaviour of patients with acquired brain lesions, normal volunteers, children with typical and atypical development, and in the activation of brain regions and systems as recorded by functional neuroimaging techniques. It was founded in 1964 by Ennio De Renzi.
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