Search results (83)
« Back to PublicationsSleep-wake-related changes in intracellular chloride regulate plasticity at glutamatergic cortical synapses.
Journal article
Alfonsa H. et al, (2025), Curr Biol, 35, 1373 - 1381.e3
Bidirectional modulation of sleep and wakefulness via prefrontal cortical chemogenetics
Preprint
Krone L. et al, (2025)
All-optical reporting of inhibitory receptor driving force in the nervous system.
Journal article
Selfe JS. et al, (2024), Nat Commun, 15
Local cortical inhibitory subnetworks are shaped by pyramidal neuron progenitor type
Preprint
Gothard G. et al, (2024)
sUPRa is a dual-color reporter for unbiased quantification of the unfolded protein response with cellular resolution.
Journal article
Chakrabarty A. et al, (2024), Sci Rep, 14
Higher-order thalamocortical circuits are specified by embryonic cortical progenitor types in the mouse brain.
Journal article
Buchan MJ. et al, (2024), Cell Rep, 43
Optogenetic Determination of Dynamic and Cell-Type-Specific Inhibitory Reversal Potentials.
Journal article
Burman RJ. et al, (2024), J Neurosci, 44
Somnotate: A probabilistic sleep stage classifier for studying vigilance state transitions.
Journal article
Brodersen PJN. et al, (2024), PLoS Comput Biol, 20
Active cortical networks promote shunting fast synaptic inhibition in vivo.
Journal article
Burman RJ. et al, (2023), Neuron, 111, 3531 - 3540.e6
All-optical reporting of inhibitory receptor driving force in the nervous system
Preprint
Selfe JS. et al, (2023)
Optogenetic determination of dynamic and cell-type-specific chloride equilibrium potentials
Preprint
Burman RJ. et al, (2023)
A genetically targeted ion sensor reveals distinct seizure-related chloride and pH dynamics in GABAergic interneuron populations.
Journal article
Călin A. et al, (2023), iScience, 26
Effects of clozapine-N-oxide and compound 21 on sleep in laboratory mice
Journal article
Traut J. et al, (2023), eLife
Effects of clozapine-N-oxide and compound 21 on sleep in laboratory mice.
Conference paper
Traut J. et al, (2023), Elife, 12
Active cortical networks promote shunting fast synaptic inhibition in vivo
Preprint
Burman RJ. et al, (2023)
