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首页> 外文期刊>Brain and Behavior >The attentional‐relevance and temporal dynamics of visual‐tactile crossmodal interactions differentially influence early stages of somatosensory processing
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The attentional‐relevance and temporal dynamics of visual‐tactile crossmodal interactions differentially influence early stages of somatosensory processing

机译:视听交联交互的注意相关性和时间动态差异地影响体感处理的早期阶段

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AbstractBackgroundCrossmodal interactions between relevant visual and tactile inputs can enhance attentional modulation at early stages in somatosensory cortices to achieve goal-oriented behaviors. However, the specific contribution of each sensory system during attentional processing remains unclear. We used EEG to investigate the effects of visual priming and attentional relevance in modulating somatosensory cortical responses.MethodsHealthy adults performed a sensory integration task that required scaled motor responses dependent on the amplitudes of tactile and visual stimuli. Participants completed an attentional paradigm comprised of 5 conditions that presented sequential or concurrent pairs of discrete stimuli with random amplitude variations: 1) tactile-tactile (TT), 2) visual-visual (VV), 3) visual-tactile simultaneous (SIM), 4) tactile-visual delay (TVd), and 5) visual-tactile delay (VTd), each with a 100 ms temporal delay between stimulus onsets. Attention was directed to crossmodal conditions and graded motor responses representing the summation of the 2 stimulus amplitudes were made.ResultsResults of somatosensory ERPs showed that the modality-specific components (P50, P100) were sensitive to i) the temporal dynamics of crossmodal interactions, and ii) the relevance of these sensory signals for behaviour.ConclusionNotably, the P50 amplitude was greatest in the VTd condition, suggesting that presentation of relevant visual information for upcoming movement modulates somatosensory processing in modality-specific cortical regions, as early as the primary somatosensory cortex (SI).
机译:摘要背景相关视觉和触觉输入之间的交互交互作用可以增强体感皮层早期的注意力调节,从而实现面向目标的行为。然而,在注意过程中每个感觉系统的具体贡献仍然不清楚。我们使用脑电图来研究视觉启动和注意相关性在调节体感皮层反应中的作用。方法健康的成年人执行了感觉统合任务,需要根据触觉和视觉刺激的幅度调整运动反应。参与者完成了一个由5个条件组成的注意范式,这些条件呈现了顺序或并发的离散刺激对,并具有随机幅度变化:1)触觉(TT),2)视觉-视觉(VV),3)视觉-视觉同时(SIM) ,4)触觉-视觉延迟(TVd)和5)视觉-触觉延迟(VTd),每个刺激发作之间的时间延迟均为100毫秒。注意跨模态条件,并进行了代表两个刺激幅度之和的分级运动反应。结果体感ERPs结果表明,模态特异性成分(P50,P100)对i)跨模态相互作用的时间动态敏感,并且ii)这些感觉信号与行为的相关性结论值得注意的是,在VTd条件下P50振幅最大,这表明有关即将到来的运动的相关视觉信息的呈现最早在主要的体感皮层中调节了特定于模式的皮层区域中的体感处理。 (SI)。

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