Paraphernalia
PPubMed18 Feb 2021Cited 9×

Information diversity in individual auditory cortical neurons is associated with functionally distinct coordinated neuronal ensembles

Jermyn Z. See, Natsumi Y. Homma, Craig A. Atencio, Vikaas S. Sohal, Christoph E. Schreiner

Abstract

'Christoph E. Schreiner'] Neuronal activity in auditory cortex is often highly synchronous between neighboring neurons. Such coordinated activity is thought to be crucial for information processing. We determined the functional properties of coordinated neuronal ensembles (cNEs) within primary auditory cortical (AI) columns relative to the contributing neurons. Nearly half of AI cNEs showed robust spectro-temporal receptive fields whereas the remaining cNEs showed little or no acoustic feature selectivity. cNEs can therefore capture either specific, time-locked information of spectro-temporal stimulus features or reflect stimulus-unspecific, less-time specific processing aspects. By contrast, we show that individual neurons can represent both of those aspects through membership in multiple cNEs with either high or absent feature selectivity. These associations produce functionally heterogeneous spikes identifiable by instantaneous association with different cNEs. This demonstrates that single neuron spike trains can sequentially convey multiple aspects that contribute to cortical processing, including stimulus-specific and unspecific information.

A figure from Information diversity in individual auditory cortical neurons is associated with functionally distinct coordinated neuronal ensembles
fig. from the paper

§ The Valyu brief

Reading the full paper and taking notes. This takes a few seconds…

§ Ask this paper

Ask a question about this paper

Valyu reads the full text and answers from what the paper actually says.

Q.

Searching the other archives…

Information diversity in individual auditory cortical neurons is associated with functionally distinct coordinated neuronal ensembles · Paraphernalia