The cerebral cortex operates in a state of restless activity, even in the absence of external stimuli. Collective neuronal activities, such as neural avalanches and synchronized oscillations, are also found under rest conditions, and these features have been suggested to support sensory processing, brain readiness for rapid responses, and computational efficiency. The rat barrel cortex and thalamus circuit, with its somatotopic organization for processing sensory inputs from the whiskers, provides a powerful system to explore such interplay. To characterize these resting state circuits, we perform simultaneous multi-electrode recordings in rats’ barrel cortex and thalamus. During spontaneous activity, oscillations with frequencies centered around 11 Hz are detected concomitantly with slow oscillations below 4 Hz, as well as power-law distributed avalanches. The phase of the lower-frequency oscillation appears to modulate the higher-frequency amplitude, and it has a role in gating avalanche occurrences. We then record neural activity during controlled whisker movements and observe that the 11 Hz barrel circuit active at rest is indeed the one involved in response to whisker stimulation. We finally show how a thalamic-driven firing-rate model can describe the entire phenomenology observed at resting state and predict the response of the barrel cortex to controlled whisker movement, suggesting that the same intrinsic dynamics underlying resting-state activity also shape sensory responses.

Mariani, B., Guevara, R., Tambaro, M., Maschietto, M., Leparulo, A., Vassanelli, S., et al. (2026). Whisker stimulation reinforces a resting-state network in the barrel cortex: Nested oscillations and avalanches. PLOS COMPUTATIONAL BIOLOGY, 22(7) [10.1371/journal.pcbi.1014521].

Whisker stimulation reinforces a resting-state network in the barrel cortex: Nested oscillations and avalanches

Tambaro M.;
2026

Abstract

The cerebral cortex operates in a state of restless activity, even in the absence of external stimuli. Collective neuronal activities, such as neural avalanches and synchronized oscillations, are also found under rest conditions, and these features have been suggested to support sensory processing, brain readiness for rapid responses, and computational efficiency. The rat barrel cortex and thalamus circuit, with its somatotopic organization for processing sensory inputs from the whiskers, provides a powerful system to explore such interplay. To characterize these resting state circuits, we perform simultaneous multi-electrode recordings in rats’ barrel cortex and thalamus. During spontaneous activity, oscillations with frequencies centered around 11 Hz are detected concomitantly with slow oscillations below 4 Hz, as well as power-law distributed avalanches. The phase of the lower-frequency oscillation appears to modulate the higher-frequency amplitude, and it has a role in gating avalanche occurrences. We then record neural activity during controlled whisker movements and observe that the 11 Hz barrel circuit active at rest is indeed the one involved in response to whisker stimulation. We finally show how a thalamic-driven firing-rate model can describe the entire phenomenology observed at resting state and predict the response of the barrel cortex to controlled whisker movement, suggesting that the same intrinsic dynamics underlying resting-state activity also shape sensory responses.
Articolo in rivista - Articolo scientifico
Action Potentials; Animals; Models, Neurological; Nerve Net; Neurons; Physical Stimulation; Rats; Rest; Somatosensory Cortex; Thalamus; Vibrissae
English
24-lug-2026
2026
22
7
e1014521
open
Mariani, B., Guevara, R., Tambaro, M., Maschietto, M., Leparulo, A., Vassanelli, S., et al. (2026). Whisker stimulation reinforces a resting-state network in the barrel cortex: Nested oscillations and avalanches. PLOS COMPUTATIONAL BIOLOGY, 22(7) [10.1371/journal.pcbi.1014521].
File in questo prodotto:
File Dimensione Formato  
Mariani et al-2026-PLoS Comput Bio-VoR.pdf

accesso aperto

Tipologia di allegato: Publisher’s Version (Version of Record, VoR)
Licenza: Creative Commons
Dimensione 2.61 MB
Formato Adobe PDF
2.61 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/625182
Citazioni
  • Scopus 0
  • ???jsp.display-item.citation.isi??? 0
Social impact