Cortical cooling reveals a role for visual cortex in generating visual responses in auditory cortex
Norris, R. H. C.; Town, S. M.; Wood, K. C.; Bizley, J. K.
Show abstract
Multisensory integration is a fundamental feature of cortical processing, yet the functional pathways that deliver visual signals to the auditory cortex remain poorly understood. While anatomical studies reveal multiple candidate projection routes, demonstrating their causal contribution requires targeted manipulation of neural activity. Here, we used cortical cooling to reversibly inactivate the posteromedial lateral suprasylvian cortex (PMLS) and the adjacent area 21 to determine the functional role of higher-order visual areas in generating visual responses within the auditory cortex of the ferret. Units responsive to sound, light, or combined audiovisual stimuli were found across all sampled auditory fields and cortical depths, with visual responses most prominent within the infragranular layers and the non-tonotopic secondary auditory cortex of the Anterior Ectosylvian Gyrus (AEG). Cortical cooling induced robust, bi-directional, and stimulus-specific modulations of firing rates in AC. Approximately 50% of visually responsive units exhibited a significant decrease or complete elimination of visual activity during cooling, confirming a functional role for visual input from PLMS/area 21 to AC. Surprisingly, cooling also revealed circuit-level complexities: a subset ([~]5%) of units showed enhanced or newly emergent visual responses during inactivation, suggesting that PMLS/area 21 normally exerts a gating influence over alternative visual pathways. Furthermore, contrary to feedforward anatomical predictions, neurons in the AEG--the region most heavily innervated by the cooled visual areas --were less frequently impacted by cooling than those in PEG. Together, these findings demonstrate that higher visual areas causally shape cross-modal processing in the auditory cortex through a complex mixture of direct excitation and network-level modulation.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Early retinal deprivation crossmodally alters nascent subplate circuits and activity in the auditory cortex during the precritical period 95%
- Spatiotemporal dynamics across visual cortical laminae support a predictive coding framework for interpreting mismatch responses 95%
- Functional and structural features of L2/3 pyramidal cells continuously covary with pial depth in mouse visual cortex 94%
Similar papers in this journal
Similar papers in this journal
- Neuronal responses in mouse inferior colliculus correlate with behavioral detection of amplitude modulated sound 94%
- A template-matching algorithm for laminar identification of cortical recording sites from evoked response potentials 94%
- Visually-evoked activity and variable modulation of auditory responses in the macaque inferior colliculus 93%
"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.