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首页> 外文期刊>Journal of Cognitive Neuroscience >Increased Neural Strength and Reliability to Audiovisual Stimuli at the Boundary of Peripersonal Space
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Increased Neural Strength and Reliability to Audiovisual Stimuli at the Boundary of Peripersonal Space

机译:在人际空间边界处神经强度和对视听刺激的可靠性提高

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摘要

The actionable space surrounding the body, referred to as peripersonal space (PPS), has been the subject of significant interest of late within the broader framework of embodied cognition. Neurophysiological and neuroimaging studies have shown the representation of PPS to be built from visuotactile and audiotactile neurons within a frontoparietal network and whose activity is modulated by the presence of stimuli in proximity to the body. In contrast to single-unit and fMRI studies, an area of inquiry that has received little attention is the EEG characterization associated with PPS processing. Furthermore, although PPS is encoded by multisensory neurons, to date there has been no EEG study systematically examining neural responses to unisensory and multisensory stimuli, as these are presented outside, near, and within the boundary of PPS. Similarly, it remains poorly understood whether multisensory integration is generally more likely at certain spatial locations (e.g., near the body) or whether the cross-modal tactile facilitation that occurs within PPS is simply due to a reduction in the distance between sensory stimuli when close to the body and in line with the spatial principle of multisensory integration. In the current study, to examine the neural dynamics of multisensory processing within and beyond the PPS boundary, we present auditory, visual, and audiovisual stimuli at various distances relative to participants' reaching limit-an approximation of PPS-while recording continuous high-density EEG. We question whether multisensory (vs. unisensory) processing varies as a function of stimulus-observer distance. Results demonstrate a significant increase of global field power (i.e., overall strength of response across the entire electrode montage) for stimuli presented at the PPS boundary-an increase that is largest under multisensory (i.e., audiovisual) conditions. Source localization of the major contributors to this global field power difference suggests neural generators in the intraparietal sulcus and insular cortex, hubs for visuotactile and audiotactile PPS processing. Furthermore, when neural dynamics are examined in more detail, changes in the reliability of evoked potentials in centroparietal electrodes are predictive on a subject-by-subject basis of the later changes in estimated current strength at the intraparietal sulcus linked to stimulus proximity to the PPS boundary. Together, these results provide a previously unrealized view into the neural dynamics and temporal code associated with the encoding of nontactile multisensory around the PPS boundary.
机译:围绕身体的可操作空间,称为人际空间(PPS),最近在更广泛的体现认知框架内引起了人们的极大兴趣。神经生理学和神经影像学研究表明,PPS的代表是由额前额叶网内的触觉和听觉触觉神经元构建的,并且其活动受人体附近刺激的存在而调节。与单单位和功能磁共振成像研究相比,与PPS处理相关的脑电图表征很少受到关注。此外,尽管PPS由多感觉神经元编码,但是迄今为止,还没有EEG研究系统地检查对单感觉和多感觉刺激的神经反应,因为这些反应在PPS的外部,附近和内部出现。类似地,人们尚不清楚人们是否普遍在某些空间位置(例如,在身体附近)进行多感官整合,还是在PPS内发生的跨模态触觉促进是仅由于接近时感官刺激之间距离的减小而引起的。到身体并符合多感官整合的空间原理。在当前的研究中,为了检查PPS边界内外的多感觉处理的神经动力学,我们呈现了相对于参与者达到极限的各种距离的听觉,视觉和视听刺激-近似于PPS,同时记录了连续的高密度脑电图。我们质疑多感官(相对于单感官)处理是否随刺激观察者距离的变化而变化。结果表明,在PPS边界处呈现的刺激的全球场功率(即整个电极蒙太奇的整体响应强度)显着增加-这种增加在多感官(即视听)条件下最大。源于这种全球场功率差异的主要来源的定位表明,顶内沟和岛状皮层中的神经发生器是视触觉和听觉PPS处理的枢纽。此外,当对神经动力学进行更详细的检查时,在逐个对象的基础上,可以预测后来在顶壁沟中估计电流强度的变化(与刺激物靠近PPS的联系),来预测中心电极上诱发电位的可靠性变化。边界。总之,这些结果为神经动力学和时间代码提供了以前未实现的视图,这些神经动力​​学和时间代码与围绕PPS边界的非触觉多感觉编码有关。

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  • 来源
    《Journal of Cognitive Neuroscience 》 |2019年第8期| 1155-1172| 共18页
  • 作者单位

    Vanderbilt Univ, 221 Kirkland Hall, Nashville, TN 37235 USA;

    Univ Lausanne, Lausanne, Switzerland|Ecole Polytech Fed Lausanne, Lausanne, Switzerland;

    Vanderbilt Univ, 221 Kirkland Hall, Nashville, TN 37235 USA|Vanderbilt Univ, Med Ctr, Nashville, TN USA;

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