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Titlebook: Advances of Multisensory Integration in the Brain; Yong Gu,Adam Zaidel Book 2024 The Editor(s) (if applicable) and The Author(s), under ex

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Neural Oscillations and Multisensory Processing,ownstream areas. Compared to synchronized oscillations, asynchronized oscillations may impede signal processing, and may contribute to sensory selection by setting the oscillations in the target-related cortex and the oscillations in the distractor-related cortex to opposite phases.
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Multisensory Calibration: A Variety of Slow and Fast Brain Processes Throughout the Lifespan,gnitive mechanism. Indeed, neural correlates of supervised multisensory calibration in monkeys were found in higher level multisensory cortical area VIP, but not in the relatively lower level multisensory area MSTd. In addition, even without a cue discrepancy (e.g., when experiencing stimuli from di
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The Development of Multisensory Integration at the Neuronal Level,responding integrative ability could be blocked until the appropriate multisensory experience is obtained. This section summarizes the extant literature on the development of multisensory integration (mainly using cat superior colliculus as a model), sensory-deprivation-induced cross-modal plasticit
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Recent Evolution of Gut Rehabilitation,relates of the behavioral results: PPC neurons encoded both graded information about the object and categorical information about the animal’s decision. Intriguingly single neurons showed identical responses under each of the three modality conditions providing a substrate for a neural circuit in th
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Negotiations and Peace Processesons, and it is likely that neural synchrony is related to potential neural mechanisms underlying these processes. Primary sensory areas and associative areas coordinate together through neural synchrony to fulfil crossmodal associations and to guide working memory performance.
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