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Event Related Potentials Index Rapid Recalibration to Audiovisual Temporal Asynchrony

机译:事件相关电位指数对视听时间异步的快速重新校准

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摘要

Asynchronous arrival of multisensory information at the periphery is a ubiquitous property of signals in the natural environment due to differences in the propagation time of light and sound. Rapid adaptation to these asynchronies is crucial for the appropriate integration of these multisensory signals, which in turn is a fundamental neurobiological process in creating a coherent perceptual representation of our dynamic world. Indeed, multisensory temporal recalibration has been shown to occur at the single trial level, yet the mechanistic basis of this rapid adaptation is unknown. Here, we investigated the neural basis of rapid recalibration to audiovisual temporal asynchrony in human participants using a combination of psychophysics and electroencephalography (EEG). Consistent with previous reports, participant’s perception of audiovisual temporal synchrony on a given trial (t) was influenced by the temporal structure of stimuli on the previous trial (t−1). When examined physiologically, event related potentials (ERPs) were found to be modulated by the temporal structure of the previous trial, manifesting as late differences (>125 ms post second-stimulus onset) in central and parietal positivity on trials with large stimulus onset asynchronies (SOAs). These findings indicate that single trial adaptation to audiovisual temporal asynchrony is reflected in modulations of late evoked components that have previously been linked to stimulus evaluation and decision-making.
机译:由于光和声传播时间的差异,在自然环境中,信号的普遍到达是多传感器信息在外围的异步到达。对这些异步的快速适应对于这些多感官信号的适当整合至关重要,而这反过来又是建立我们动态世界的连贯感知表示的基本神经生物学过程。确实,已经在单次试验水平上显示了多感觉时间重新校准,但是这种快速适应的机制基础尚不清楚。在这里,我们研究了使用心理物理学和脑电图(EEG)相结合的人类参与者快速重新校准为视听时间异步的神经基础。与先前的报告一致,参与者对给定试验(t)的视听时间同步的感知受先前试验(t-1)上刺激的时间结构影响。进行生理学检查时,发现事件相关电位(ERP)受先前试验的时间结构调节,表现为在具有较大刺激发作异步性的试验中,中枢和顶叶阳性的后期差异(第二刺激发作后> 125 ms) (这样)。这些发现表明,单次试验对视听时间异步的适应反映在后期诱发成分的调制上,这些成分以前与刺激评估和决策有关。

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