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Recalibration of the Multisensory Temporal Window of Integration Results from Changing Task Demands

机译:不断变化的任务需求重新集成的多感官时间窗口的校准

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摘要

The notion of the temporal window of integration, when applied in a multisensory context, refers to the breadth of the interval across which the brain perceives two stimuli from different sensory modalities as synchronous. It maintains a unitary perception of multisensory events despite physical and biophysical timing differences between the senses. The boundaries of the window can be influenced by attention and past sensory experience. Here we examined whether task demands could also influence the multisensory temporal window of integration. We varied the stimulus onset asynchrony between simple, short-lasting auditory and visual stimuli while participants performed two tasks in separate blocks: a temporal order judgment task that required the discrimination of subtle auditory-visual asynchronies, and a reaction time task to the first incoming stimulus irrespective of its sensory modality. We defined the temporal window of integration as the range of stimulus onset asynchronies where performance was below 75% in the temporal order judgment task, as well as the range of stimulus onset asynchronies where responses showed multisensory facilitation (race model violation) in the reaction time task. In 5 of 11 participants, we observed audio-visual stimulus onset asynchronies where reaction time was significantly accelerated (indicating successful integration in this task) while performance was accurate in the temporal order judgment task (indicating successful segregation in that task). This dissociation suggests that in some participants, the boundaries of the temporal window of integration can adaptively recalibrate in order to optimize performance according to specific task demands.
机译:整合的时间窗的概念在多感官环境中应用时,是指大脑将来自不同感官方式的两种刺激视为同步的间隔的广度。尽管感官之间的物理和生物物理时序存在差异,但它仍保持对多感官事件的统一感知。窗户的边界会受到注意力和过去的感官经验的影响。在这里,我们检查了任务需求是否还会影响整合的多感觉时间窗口。我们在简单,持续时间较短的听觉和视觉刺激之间改变了刺激发作的异步性,而参与者在单独的区域中执行了两项任务:需要区分细微的听觉-视觉异步的时间顺序判断任务,以及对第一次传入的反应时间任务刺激,无论其感觉方式如何。我们将时间整合窗口定义为在时间顺序判断任务中表现低于75%的刺激发作异步范围,以及反应在反应时间内表现出多感觉促进作用(违反种族模型)的刺激发作异步范围。任务。在11名参与者中的5名中,我们观察到视听刺激发作的异步性,其中反应时间显着加快(表明该任务成功整合),而时间顺序判断任务的表现准确(表明该任务成功分离)。这种分离表明,在某些参与者中,集成的时间窗口的边界可以自适应地重新校准,以便根据特定任务需求优化性能。

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