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Rapid recalibration to audiovisual asynchrony

机译:快速重新校准视听异步

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摘要

To combine information from different sensory modalities, the brain must deal with considerable temporal uncertainty. In natural environments, an external event may produce simultaneous auditory and visual signals yet they will invariably activate the brain asynchronously due to different propagation speeds for light and sound, and different neural response latencies once the signals reach the receptors. One strategy the brain uses to deal with audiovisual timing variation is to adapt to a prevailing asynchrony to help realign the signals. Here, using psychophysical methods in human subjects, we investigate audiovisual recalibration and show that it takes place extremely rapidly without explicit periods of adaptation. Our results demonstrate that exposure to a single, brief asynchrony is sufficient to produce strong recalibration effects. Recalibration occurs regardless of whether the preceding trial was perceived as synchronous, and regardless of whether a response was required.Wepropose that this rapid recalibration is a fast-acting sensory effect, rather than a higher-level cognitive process. Anaccountintermsofresponsebias is unlikelyduetoastrongasymmetrywherebystimuliwithvision leadingproducebigger recalibrations than audition leading. A fast-acting recalibration mechanism provides a means for overcoming inevitable audiovisual timing variation and serves to rapidly realign signals at onset to maximize the perceptual benefits of audiovisual integration.
机译:为了结合来自不同感觉方式的信息,大脑必须处理相当大的时间不确定性。在自然环境中,外部事件可能会同时产生听觉和视觉信号,但由于光和声的传播速度不同,信号到达受体后,神经反应潜伏期也会不同,因此它们将始终异步地激活大脑。大脑用来处理视听时序变化的一种策略是适应普遍存在的异步性,以帮助重新对齐信号。在这里,我们使用人类受试者的心理物理方法,对视听重新校准进行了调查,结果表明,校准过程非常迅速,没有明确的适应期。我们的结果表明,暴露于单个短暂的异步足以产生强大的重新校准效果。不管先前的试验是否被认为是同步的,也无论是否需要响应,都会进行重新校准。我们建议这种快速重新校准是一种速效的感官效果,而不是更高层次的认知过程。响应偏差的会计处理不太可能出现双重强烈的不对称性,在这种情况下,视觉引导的刺激产生的校正比试听引导的产生的校正更大。快速动作的重新校准机制提供了一种克服不可避免的视听时序变化的方法,并且可以在开始时快速重新对齐信号,以最大化视听集成的感知优势。

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