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  4. Basal Forebrain Gating By Somatostatin Neurons Drives Prefrontal Cortical Activity
 
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Basal Forebrain Gating By Somatostatin Neurons Drives Prefrontal Cortical Activity

Journal
Cerebral Cortex
Date Issued
2017-10-25
Author(s)
Nelson Espinosa
Alejandra Alonso
Cristian Morales
Pedro Espinosa
Chávez, Andrés  
Facultad de Ciencias  
Pablo Fuentealba
DOI
10.1093/cercor/bhx302
WoS ID
WOS:000459518500004
Abstract
The basal forebrain provides modulatory input to the cortex regulating brain states and cognitive processing. Somatostatin-expressing neurons constitute a heterogeneous GABAergic population known to functionally inhibit basal forebrain cortically projecting cells thus favoring sleep and cortical synchronization. However, it remains unclear if somatostatin cells can regulate population activity patterns in the basal forebrain and modulate cortical dynamics. Here, we demonstrate that somatostatin neurons regulate the corticopetal synaptic output of the basal forebrain impinging on cortical activity and behavior. Optogenetic inactivation of somatostatin neurons in vivo rapidly modified neural activity in the basal forebrain, with the consequent enhancement and desynchronization of activity in the prefrontal cortex, reflected in both neuronal spiking and network oscillations. Cortical activation was partially dependent on cholinergic transmission, suppressing slow waves and potentiating gamma oscillations. In addition, recruitment dynamics was cell type-specific, with interneurons showing similar temporal profiles, but stronger responses than pyramidal cells. Finally, optogenetic stimulation of quiescent animals during resting periods prompted locomotor activity, suggesting generalized cortical activation and increased arousal. Altogether, we provide physiological and behavioral evidence indicating that somatostatin neurons are pivotal in gating the synaptic output of the basal forebrain, thus indirectly controlling cortical operations via both cholinergic and non-cholinergic mechanisms.
Subjects

Cellular And Molecula...

Cognitive Neuroscienc...

Neurosciences

OCDE Subjects

Medical And Health Sc...

Quartile (Date Issued)
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