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Rapid Temporal Recalibration to Audiovisual Asynchrony Occurs Across the Difference in Neural Processing Speed Based on Spatial Frequency

机译:基于空间频率的神经处理速度的差异,发生了快速的时间重新校准。基于空间频率,发生了横跨神经处理速度的差异

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Audiovisual integration relies on temporal synchrony between visual and auditory stimuli. The brain rapidly adapts to audiovisual asynchronous events by shifting the timing of subjective synchrony in the direction of the leading modality of the most recent event, a process called rapid temporal recalibration. This phenomenon is the flexible function of audiovisual synchrony perception. Previous studies found that neural processing speed based on spatial frequency (SF) affects the timing of subjective synchrony. This study examined the effects of SF on the rapid temporal recalibration process by discriminating whether the presentation of the visual and auditory stimuli was simultaneous. I compared the magnitudes of the recalibration effect between low and high SF visual stimuli using two techniques. First, I randomly presented each SF accompanied by a tone during one session, then in a second experiment, only a single SF was paired with the tone throughout the one session. The results indicated that rapid recalibration occurred regardless of difference in presented SF between preceding and test trials. The recalibration magnitude did not significantly differ between the SF conditions. These findings confirm that intersensory temporal process is important to produce rapid recalibration and suggest that rapid recalibration can be induced by the simultaneity judgment criterion changes attributed to the low-level temporal information of audiovisual events.
机译:视听融合依赖于视觉和听觉刺激之间的时间同步。大脑通过在最近事件的前导方式的方向转换主观同步的时序来迅速适应视听异步事件,这是一个称为快速时间重新校准的过程。这种现象是视听同步感知的灵活功能。以前的研究发现,基于空间频率(SF)的神经处理速度影响主观同步的定时。本研究通过鉴别视觉和听觉刺激的呈现是同时的,检查了SF对快速时间重新校准过程的影响。我使用两种技术比较了低和高SF视觉刺激之间的重新校准效应的大小。首先,我随机呈现每个SF伴随一个会话期间的音调,然后在第二个实验中,只有一个SF在整个会话中与音调配对。结果表明,无论前一试和试验之间所呈现的SF差异如何,发生了快速重新校准。 SF条件之间的重新校准幅度没有显着差异。这些发现证实,相交的时间过程很重要,无法快速重新校准,并表明可以通过归因于视听事件的低级时间信息的同时判断标准变化来引起快速重新校准。

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  • 来源
    《I-Perception》 |2020年第6期|共11页
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    Yasuhiro Takeshima;

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  • 入库时间 2022-08-18 23:57:43

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