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Domenici, N.

Publications and source records attributed to Domenici, N..

2 recordsLinked to original sources

Confidence judgements from fused multisensory percepts

Distinguishing between reliable and unreliable internal sensory representations is crucial for a successful interaction with the environment. Precise estimates of the uncertainty of sensory representations are critical to optimally integrate multiple sensory modalities and produce a coherent interpretation of the world. However, once a multisensory percept is produced, it is not yet known whether humans still have access to the uncertainty of each sensory modality. Here, we asked human participants to perform a series of temporal bisection tasks, in either unimodal visual or auditory conditions, or in bimodal audiovisual conditions where vision and audition could be congruent or not. The validity of their temporal bisection was assessed by asking participants to choose which of two consecutive decisions they felt more confident of being correct, focussing only on the visual modality. We found that once multisensory information is integrated, participants could no longer access the unisensory information to evaluate the validity of their decisions. Comparing three generative models of confidence, we show that confidence judgments are fooled by the fused bimodal percept. These results highlight that some critical information is lost between perceptual and metaperceptual stages of processing in the human brain.

neuroscience↗

Saccadic compression of time as a marker for Developmental Dyslexia

About 10% of the worlds population is dyslexic, experiencing reading impairments unrelated to cognitive deterioration. Due to its impact, identifying the mechanisms subtending dyslexia is paramount. However, while most research focused on the eye movements phenomenology, none investigated their perceptual, transient consequences. In fact, it has been shown that rapid eye movements (i.e., saccades) are accompanied by temporary distortions of space and time. Such distortions have been linked to the receptive fields predictive remapping, which anticipates the movement and compensates for the gazes displacement. Here, we demonstrate that dyslexic children show reduced flexibility in modulating temporal information around the saccadic onset. Moreover, accuracy oscillations within the delta band, phase-locked to the saccades onset, preceded transient temporal compression in typical readers. Conversely, no oscillatory behavior was observed in dyslexic participants, suggesting that the absence of transient temporal distortions originated from the mismatch between the anticipatory remapping and the saccadic onset.

neuroscience↗