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Audio-Visual Temporal Recalibration Can be Constrained by Content Cues Regardless of Spatial Overlap

机译:视听时间重新校准可能受到内容提示的约束而与空间重叠无关

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摘要

It has now been well established that the point of subjective synchrony for audio and visual events can be shifted following exposure to asynchronous audio-visual presentations, an effect often referred to as temporal recalibration. Recently it was further demonstrated that it is possible to concurrently maintain two such recalibrated estimates of audio-visual temporal synchrony. However, it remains unclear precisely what defines a given audio-visual pair such that it is possible to maintain a temporal relationship distinct from other pairs. It has been suggested that spatial separation of the different audio-visual pairs is necessary to achieve multiple distinct audio-visual synchrony estimates. Here we investigated if this is necessarily true. Specifically, we examined whether it is possible to obtain two distinct temporal recalibrations for stimuli that differed only in featural content. Using both complex (audio visual speech; see ) and simple stimuli (high and low pitch audio matched with either vertically or horizontally oriented Gabors; see ) we found concurrent, and opposite, recalibrations despite there being no spatial difference in presentation location at any point throughout the experiment. This result supports the notion that the content of an audio-visual pair alone can be used to constrain distinct audio-visual synchrony estimates regardless of spatial overlap.
机译:现已确定,在暴露于异步视听演示之后,可以转移音频和视觉事件的主观同步点,这种效果通常称为时间重新校准。最近,进一步证明可以同时保持两个这样的重新校准的视听时间同步估计。但是,尚不清楚精确地定义给定视听对的是什么,从而有可能维持不同于其他对的时间关系。已经提出,不同视听对的空间分离对于实现多个不同的视听同步估计是必要的。在这里,我们调查了是否确实如此。具体来说,我们检查了是否有可能获得两个仅在胎儿内容上有所不同的刺激的不同时间重新校准。使用复杂的(视听语音;请参阅)和简单的刺激(高音和低音与垂直或水平方向的Gabors匹配;请参阅),我们发现同时进行和相反的重新校准,尽管在任何位置上演示位置都没有空间差异在整个实验中该结果支持这样的观念,即视听对的内容可以单独用于约束不同的视听同步估计,而与空间重叠无关。

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