2020
DOI: 10.1016/j.neuropsychologia.2020.107396
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Audiovisual temporal integration: Cognitive processing, neural mechanisms, developmental trajectory and potential interventions

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Cited by 50 publications
(48 citation statements)
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References 268 publications
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“…Six seeds are defined based on an activation likelihood estimation (ALE) meta‐analysis examining the neural activities more engaged by asynchronous audiovisual processing than synchronous perception [Zhou, Cheung, & Chan, 2020]. They included (a) the right middle temporal gyrus (the right MTG; 2120 mm 3 ); (b) the left superior temporal cortex (the left STC; 1936 mm 3 ); (c) the left cerebellum (1536 mm 3 ); (d) the left superior temporal cortex (the left STC; 1224 mm 3 ); (f) the right superior temporal cortex (the right STC; 752 mm 3 ); and (g) the left anterior superior temporal gyrus extending to the inferior frontal gyrus (the left aSTG/IFG; 576 mm 3 ).…”
Section: Methodsmentioning
confidence: 99%
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“…Six seeds are defined based on an activation likelihood estimation (ALE) meta‐analysis examining the neural activities more engaged by asynchronous audiovisual processing than synchronous perception [Zhou, Cheung, & Chan, 2020]. They included (a) the right middle temporal gyrus (the right MTG; 2120 mm 3 ); (b) the left superior temporal cortex (the left STC; 1936 mm 3 ); (c) the left cerebellum (1536 mm 3 ); (d) the left superior temporal cortex (the left STC; 1224 mm 3 ); (f) the right superior temporal cortex (the right STC; 752 mm 3 ); and (g) the left anterior superior temporal gyrus extending to the inferior frontal gyrus (the left aSTG/IFG; 576 mm 3 ).…”
Section: Methodsmentioning
confidence: 99%
“…Notwithstanding the accumulating research on TBW, neural substrates underlying its considerable individual difference remain largely unknown. Previous task‐based fMRI studies that compare audiovisual perception of asynchronous pairings with synchronous ones have indicated that a large‐scale network is involved in the successful detection of temporal discrepancy [Zhou, Cheung, & Chan, 2020]. Specifically, the posterior superior temporal cortex (pSTC) is a hub region for multisensory integration [Stevenson, VanDerKlok, Pisoni, & James, 2011], receiving forwarding sensory signals from primary sensory areas.…”
Section: Introductionmentioning
confidence: 99%
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“…Using audiovisual stimulation, previous studies have shown that even task-irrelevant information provided by a secondary modality can change the detection and discrimination of a primary target. Such paradigms have been found to be important for understanding the dynamics of audiovisual interactions at early stages of sensory processing (Zhou et al, 2020).…”
Section: Introductionmentioning
confidence: 99%