Comprehensive profiling of brain dynamics during anesthesia across phylogeny
Sep 29, 2026·
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Andrea Luppi, PhD
Lynn Uhrig
Jordy Tasserie
Golia Shafiei
Antoine Légaré
Kanako Muta
Junichi Hata
Hideyuki Okano
Daniel Golkowski
Andreas Ranft
Rudiger Ilg
Denis Jordan
Silvia Gini
Zhen-Qi Liu
Yohan Yee
Pablo Castro
Camilo M. Signorelli
Rodrigo Cofre
Alain Destexhe
David K. Menon
Emmanuel A. Stamatakis
Patrick Desrosiers
Paul De Koninck
Christopher W. Connor
Alessandro Gozzi
Ben D. Fulcher
Bechir Jarraya
Bratislav Misic
Abstract
Abstract The behavioral effects of anesthetics are highly conserved across species, hinting at shared and fundamental underlying mechanisms. Here we compile a dataset of multiscale neural activity during wakefulness and anesthesia, encompassing human, macaque, marmoset, mouse, zebrafish and nematode. Applying massive feature extraction, we characterize local neural dynamics across >6,000 time-series features. This reveals a conserved dynamical profile of anesthesia across species, characterized by shorter intrinsic timescales of neural activity and dampened inter-regional synchrony. Deep-brain stimulation of the macaque centromedian thalamus reverses this profile and restores behavioral responsiveness. This conserved dynamical phenotype covaries with conserved transcriptional profiles of excitatory and inhibitory neurotransmission. Biophysical modeling provides a potential mechanistic link between the macroscale dynamical phenotype of anesthesia and microscale effects of key molecular targets on the timescales of synaptic excitation and inhibition. These analyses reveal a shared neural endpoint of anesthesia: across species and scales, anesthetics induce spatiotemporal isolation of local neural activity.
Publication
Nature Neuroscience