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  3. Intrinsic neural timescales in the temporal lobe support an auditory processing hierarchy.

Intrinsic neural timescales in the temporal lobe support an auditory processing hierarchy.

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DOI
10.48350/181691
Publisher DOI
10.1523/JNEUROSCI.1941-22.2023
PubMed ID
37045604
Abstract
During rest, intrinsic neural dynamics manifest at multiple timescales, which progressively increase along visual and somatosensory hierarchies. Theoretically, intrinsic timescales are thought to facilitate processing of external stimuli at multiple stages. However, direct links between timescales at rest and sensory processing, as well as translation to the auditory system are lacking. Here, we measured intracranial electroencephalography in 11 human patients with epilepsy (4 women), while listening to pure tones. We show that in the auditory network, intrinsic neural timescales progressively increase, while the spectral exponent flattens, from temporal to entorhinal cortex, hippocampus, and amygdala. Within the neocortex, intrinsic timescales exhibit spatial gradients that follow the temporal lobe anatomy. Crucially, intrinsic timescales at baseline can explain the latency of auditory responses: as intrinsic timescales increase, so do the single-electrode response onset and peak latencies. Our results suggest that the human auditory network exhibits a repertoire of intrinsic neural dynamics, which manifest in cortical gradients with millimeter resolution and may provide a variety of temporal windows to support auditory processing.SIGNIFICANCE STATEMENT:Endogenous neural dynamics are often characterized by their intrinsic timescales. These are thought to facilitate processing of external stimuli. However, a direct link between intrinsic timing at rest and sensory processing is missing. Here, with intracranial electroencephalography (iEEG), we show that intrinsic timescales progressively increase from temporal to entorhinal cortex, hippocampus, and amygdala. Intrinsic timescales at baseline can explain the variability in the timing of iEEG responses to sounds: cortical electrodes with fast timescales also show fast and short-lasting responses to auditory stimuli, which progressively increase in the hippocampus and amygdala. Our results suggest that a hierarchy of neural dynamics in the temporal lobe manifests across cortical and limbic structures and can explain the temporal richness of auditory responses.
Date Issued
2023-05-17
Publication Type
Article
Subject(s)
000 Computer science, knowledge & systems
600 Technology > 610 Medicine & health
500 Science > 510 Mathematics
600 Technology > 620 Engineering
Language(s)
en
Author(s)
Cusinato, Riccardo  
Institut für Informatik (INF)  
Alnes, Sigurd Lerkerød  
Institut für Informatik (INF) - Computer Vision Group  
Institut für Informatik (INF)  
van Maren, Ellen Marleen  orcid-logo
Universitätsklinik für Neurologie  
Boccalaro, Ida Luisa  
Universitätsklinik für Neurologie  
Ledergerber, Debora
Adamantidis, Antoine Roger  
Universitätsklinik für Neurologie - ZEN  
Imbach, Lukas L
Schindler, Kaspar  
Universitätsklinik für Neurologie  
Baud, Maxime  
Universitätsklinik für Neurologie  
Tzovara, Athina  orcid-logo
Universitätsklinik für Neurologie  
Institut für Informatik (INF)  
Additional Credits
Institut für Informatik (INF)  
Universitätsklinik für Neurologie  
Institut für Informatik (INF) - Computer Vision Group  
Universitätsklinik für Neurologie - ZEN  
Journal
The Journal of neuroscience
Publisher
Society for Neuroscience
ISSN
1529-2401
Access(Rights)
Unknown
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