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Rapid recalibration to audiovisual asynchrony follows the physicalnot the perceivedtemporal order

机译:向Audiovisual Asynchrony的快速重新校准遵循PhotoringNot的感知状态

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In natural scenes, audiovisual events deriving from the same source are synchronized at their origin. However, from the perspective of the observer, there are likely to be significant multisensory delays due to physical and neural latencies. Fortunately, our brain appears to compensate for the resulting latency differences by rapidly adapting to asynchronous audiovisual events by shifting the point of subjective synchrony (PSS) in the direction of the leading modality of the most recent event. Here we examined whether it is the perceived modality order of this prior lag or its physical order that determines the direction of the subsequent rapid recalibration. On each experimental trial, a brief tone pip and flash were presented across a range of stimulus onset asynchronies (SOAs). The participants' task alternated over trials: On adaptor trials, audition either led or lagged vision with fixed SOAs, and participants judged the order of the audiovisual event; on test trials, the SOA as well as the modality order varied randomly, and participants judged whether or not the event was synchronized. For test trials, we showed that the PSS shifted in the direction of the physical rather than the perceived (reported) modality order of the preceding adaptor trial. These results suggest that rapid temporal recalibration is determined by the physical timing of the preceding events, not by one's prior perceptual decisions.
机译:在自然场景中,从同一源派生的视听事件在其原点上同步。然而,从观察者的角度来看,由于物理和神经延迟,可能存在显着的多思考延迟。幸运的是,我们的大脑似乎通过通过在最新事件的领先方式的方向转移主观同步(PSS)的方向来迅速调整到异步视听事件来弥补产生的潜伏期差异。在这里,我们检查了是否是此先前滞后的感知方式或其物理顺序,用于确定随后的快速重新校准的方向。在每个实验试验中,在一系列刺激发作异步(SOA)上呈现了一个简短的音调点和闪光。参与者的任务在试验中交替:在适配器试验中,试镜带领或滞后与固定的SOAS,与会者判断了视听事件的顺序;在测试试验中,SOA以及模态顺序随机变化,与会者判断事件是否同步。对于测试试验,我们表明PSS在物理方向上移动,而不是前面适配器试验的感知(报告的)模态顺序。这些结果表明,快速的时间重新校准是由前列事件的物理时间决定的,而不是通过先前的感知决策来确定。

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