Cortical oscillations support sampling-based computations in spiking neural networks.
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BORIS DOI
Publisher DOI
PubMed ID
35324886
Description
Being permanently confronted with an uncertain world, brains have faced evolutionary pressure to represent this uncertainty in order to respond appropriately. Often, this requires visiting multiple interpretations of the available information or multiple solutions to an encountered problem. This gives rise to the so-called mixing problem: since all of these "valid" states represent powerful attractors, but between themselves can be very dissimilar, switching between such states can be difficult. We propose that cortical oscillations can be effectively used to overcome this challenge. By acting as an effective temperature, background spiking activity modulates exploration. Rhythmic changes induced by cortical oscillations can then be interpreted as a form of simulated tempering. We provide a rigorous mathematical discussion of this link and study some of its phenomenological implications in computer simulations. This identifies a new computational role of cortical oscillations and connects them to various phenomena in the brain, such as sampling-based probabilistic inference, memory replay, multisensory cue combination, and place cell flickering.
Date of Publication
2022-03
Publication Type
Article
Subject(s)
600 - Technology::610 - Medicine & health
100 - Philosophy::150 - Psychology
Language(s)
en
Contributor(s)
Korcsak-Gorzo, Agnes | |
Müller, Michael G | |
Baumbach, Andreas | |
Leng, Luziwei | |
Breitwieser, Oliver J | |
van Albada, Sacha J | |
Meier, Karlheinz | |
Legenstein, Robert |
Additional Credits
Institut für Physiologie
Series
PLoS computational biology
Publisher
Public Library of Science
ISSN
1553-734X
Access(Rights)
open.access