How auditory neurons count temporal intervals and decode information

The numerical sense of animals includes identifying the numerosity of a sequence of events that occur with specific intervals, e.g., notes in a call or bar of music. Across nervous systems, the temporal patterning of spikes can code these events, but how this information is decoded (counted) remains...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2024-08, Vol.121 (35), p.e2404157121
Hauptverfasser: Alluri, Rishi K, Rose, Gary J, McDowell, Jamie, Mukhopadhyay, Anwesha, Leary, Christopher J, Graham, Jalina A, Vasquez-Opazo, Gustavo A
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Sprache:eng
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Zusammenfassung:The numerical sense of animals includes identifying the numerosity of a sequence of events that occur with specific intervals, e.g., notes in a call or bar of music. Across nervous systems, the temporal patterning of spikes can code these events, but how this information is decoded (counted) remains elusive. In the anuran auditory system, temporal information of this type is decoded in the midbrain, where "interval-counting" neurons spike only after at least a threshold number of sound pulses have occurred with specific timing. We show that this decoding process, i.e., interval counting, arises from integrating phasic, onset-type and offset inhibition with excitation that augments across successive intervals, possibly due to a progressive decrease in "shunting" effects of inhibition. Because these physiological properties are ubiquitous within and across central nervous systems, interval counting may be a general mechanism for decoding diverse information coded/encoded in temporal patterns of spikes, including "bursts," and estimating elapsed time.
ISSN:0027-8424
1091-6490
1091-6490
DOI:10.1073/pnas.2404157121