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The rhythm of sensory input shapes audio‐visual temporal processing

Datos Bibliográficos

ID9619166
AutoresDenisa Adina Zamfira (0000-0002-3741-5336, School of Psychology Vita‐Salute San Raffaele University Milan Italy), Giuseppe Di Dona (0000-0002-8778-7621, School of Psychology Vita‐Salute San Raffaele University Milan Italy), Gianluca Marsicano (0000-0001-6216-4404, Psychology Program, Division of Science New York University Abu Dhabi Abu Dhabi United Arab Emirates), Martina Battista (0009-0001-9600-0050, Division of Neuroscience IRCCS San Raffaele Scientific Institute Milan Italy), Luca Battaglini (0000-0002-5187-9225, Dipartimento di Psicologia Generale University of Padova Padova Italy), Luca Ronconi (0000-0002-4674-8917, School of Psychology Vita‐Salute San Raffaele University Milan Italy, autor de correspondencia)
Año2025
Volumen117
Número1
Páginas314-336
Fecha de publicación2025-09-16
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaBritish Journal of Psychology (JOURNAL)
Identificadores de la revistaISSN: 0007-1269 • E-ISSN: 2044-8295
EditorialWiley (PUBLISHER • GB)
DOI10.1111/bjop.70029
PMID40956654
OpenAlexW4414233623
IdiomaEN
Referencias citadas100

The temporal relationship between incoming signals is crucial in determining whether multisensory information is integrated into unitary percepts. Temporal binding windows (TBWs) define the time range within which multisensory inputs are highly likely to be perceptually integrated, even if asynchronous. TBWs widen with stimulus complexity and neurodevelopmental conditions (e.g., autism and schizophrenia), yet the key factors underlying their malleability remain unclear. The (quasi)rhythmic properties of sensory inputs, frequently embedded in natural stimuli (e.g., speech), are among the possible exogenous modulators. Indeed, stimulus spectral features can influence the alignment of neural excitability across sensory regions, synchronizing brain rhythms with external rhythmic patterns through phase‐reset mechanisms and neural entrainment. In a series of psychophysical studies, we presented simultaneity judgement tasks with pulsing audio‐visual (AV) streams amplitude‐modulated according to different regular frequencies or following purely rhythmic vs. quasi‐rhythmic (speech‐like) envelopes. Results show that TBWs decrease as the stimulus frequency increases and that speech‐like streams are integrated across larger TBWs. These findings highlight the importance of stimulus spectral structure in shaping multisensory perception. Furthermore, they show that quasi‐rhythmic spectrotemporal features of speech‐like streams induce more tolerant cross‐modal temporal processing even when the leading stimulation frequency is controlled for, putatively reflecting an adaptation to the variable rhythmic structure of natural speech. Our results align with neurophysiological accounts of neural entrainment and motivate future research in clinical populations with multisensory processing deficits

Entrainment (biomusicology) · Neurophysiology · Percept · Perception · Rhythm · Sensory stimulation therapy · Sensory system · Stimulus (psychology) · Stimulus onset asynchrony · Color perception and design · Multisensory perception and integration · Tactile and Sensory Interactions

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