Literature DB >> 33551733

Deafness Weakens Interareal Couplings in the Auditory Cortex.

Prasandhya Astagiri Yusuf1,2,3, Peter Hubka2,3, Jochen Tillein2,3,4,5, Martin Vinck6,7, Andrej Kral2,3,8.   

Abstract

The function of the cerebral cortex essentially depends on the ability to form functional assemblies across different cortical areas serving different functions. Here we investigated how developmental hearing experience affects functional and effective interareal connectivity in the auditory cortex in an animal model with years-long and complete auditory deprivation (deafness) from birth, the congenitally deaf cat (CDC). Using intracortical multielectrode arrays, neuronal activity of adult hearing controls and CDCs was registered in the primary auditory cortex and the secondary posterior auditory field (PAF). Ongoing activity as well as responses to acoustic stimulation (in adult hearing controls) and electric stimulation applied via cochlear implants (in adult hearing controls and CDCs) were analyzed. As functional connectivity measures pairwise phase consistency and Granger causality were used. While the number of coupled sites was nearly identical between controls and CDCs, a reduced coupling strength between the primary and the higher order field was found in CDCs under auditory stimulation. Such stimulus-related decoupling was particularly pronounced in the alpha band and in top-down direction. Ongoing connectivity did not show such a decoupling. These findings suggest that developmental experience is essential for functional interareal interactions during sensory processing. The outcomes demonstrate that corticocortical couplings, particularly top-down connectivity, are compromised following congenital sensory deprivation.
Copyright © 2021 Yusuf, Hubka, Tillein, Vinck and Kral.

Entities:  

Keywords:  bottom-up; cochlear implant; congenital deafness; predictive coding; synchronization; top–down

Year:  2021        PMID: 33551733      PMCID: PMC7858676          DOI: 10.3389/fnins.2020.625721

Source DB:  PubMed          Journal:  Front Neurosci        ISSN: 1662-453X            Impact factor:   4.677


  104 in total

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  6 in total

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3.  Deficient Recurrent Cortical Processing in Congenital Deafness.

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5.  Resting-state EEG reveals global network deficiency in prelingually deaf children with late cochlear implantation.

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