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Individual differences in multisensory integration and timing

机译:多义集成和时间的个体差异

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The senses have traditionally been studied separately, but it is now recognised that the brain is just as richly multisensory as is our natural environment. This creates fresh challenges for understanding how complex multisensory information is organised and coordinated around the brain. Take timing for example: the sight and sound of a person speaking or a ball bouncing may seem simultaneous, but their neural signals from each modality arrive at different multisensory areas in the brain at different times. How do we nevertheless perceive the synchrony of the original events correctly? It is popularly assumed that this is achieved via some mechanism of multisensory temporal recalibration. But recent work from my lab on normal and pathological individual differences show that sight and sound are nevertheless markedly out of synch by different amounts for each individual and even for different tasks performed by the same individual. Indeed, the more an individual perceive the same multisensory event as having an auditory lead and an auditory lag at the same time. This evidence of apparent temporal disunity sheds new light on the deep problem of understanding how neural timing relates to perceptual timing of multisensory events. It also leads to concrete therapeutic applications: for example, we may now be able to improve an individual's speech comprehension by simply delaying sound or vision to compensate for their individual perceptual asynchrony.
机译:感官历来分别研究,但它是目前公认的是,大脑是一样丰富的多感官的是我们的自然环境。这种理解是多么复杂的多感官信息的组织和大脑周围产生协调的新的挑战。举个例子时机:说话的人或球弹跳的视觉和声音似乎同步,但每一种模式的神经信号在不同的多感官领域的大脑在不同的时间到达。我们如何感知还是正确的原始事件的同步?人们普遍认为,这是通过多感官的时间重新校准的一些机制来实现的。但是,最近从我的正常和病态的个体差异的实验室工作表明,视觉和声音仍然是明显不同步,不同数额的每一个人,甚至由同一人执行不同的任务。事实上,更多的个人感知一样多感官事件为具有听觉引线和在同一时间的听觉滞后。明显的时间不统一这个证据的理解神经时机如何与多重感官事件的感知时间的深问题揭示新的光。这也导致混凝土治疗应用:例如,我们现在也许能够通过仅延迟声音或视觉来弥补其个人的感知不同步,以提高个人的言语理解。

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