Temporal Configuration as a New Feature of Sound: Psychological and Neurophysiological Evidence, Cross-species Consistency and Underlying Neuronal Mechanisms
Zhai, Y.; Du, X.; Song, P.; Xu, h.; Ye, h.; Bao, X.; Mehmood, I.; Tanigawa, H.; Niu, W.; Tu, Z.; Chen, P.; Zhang, T.; Zhang, L.; Zhao, X.; Yu, X.
Show abstract
Natural sounds are defined not only by their spectral content but also by their fine temporal structure. Here we show that millisecond-scale temporal configuration--defined by the ordering of inter-click intervals (ICIs) within a click train--behaves as a distinct auditory feature, conserved across species and emerging hierarchically along the auditory pathway. Human listeners reliably discriminated click trains that shared the same average ICI but differed in temporal configuration, and these differences elicited robust mismatch negativity (MMN) responses in an oddball paradigm, indicating automatic cortical deviance detection. Awake rats showed analogous MMN-like ECoG responses to configuration changes, demonstrating cross-species generality. Neuropixels recordings along the inferior colliculus-medial geniculate body-primary auditory cortex (IC-MGB-A1) axis revealed minimal configuration sensitivity in IC, intermediate sensitivity in MGB, and strong stimulus-specific adaptation to temporal configuration in A1. Reversible cooling of auditory cortex reduced configuration sensitivity in MGB, implicating corticothalamic feedback in shaping thalamic representations. Layer-resolved analyses further showed that supragranular A1 neurons carry stronger configuration-specific adaptation than infragranular neurons. These findings identify temporal configuration as a feature-like dimension of sound and delineate a hierarchical, feedback-dependent IC-MGB-A1 circuit architecture for encoding fine temporal structure in the mammalian brain.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- A Rapid Anterior Auditory Processing Stream Through the Insulo-Parietal Auditory Field in the Rat 97%
- Rhythmic modulation of visual perception by continuous rhythmic auditory stimulation 96%
- Earliest experience of a relatively rare sound but not a frequent sound causes long term changes in 8 the adult auditory cortex 95%
Similar papers in this journal
- Neural response properties predict perceived contents and locations elicited by intracranial electrical stimulation of human auditory cortex 97%
- Two Stages of Speech Envelope Tracking in Human Auditory Cortex Modulated by Speech Intelligibility 94%
- Sensory experience selectively reorganizes the late component of evoked responses 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.