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  4. Large-Scale Coupling Of Prefrontal Activity Patterns As A Mechanism For Cognitive Control In Health And Disease: Evidence From Rodent Models
 
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Large-Scale Coupling Of Prefrontal Activity Patterns As A Mechanism For Cognitive Control In Health And Disease: Evidence From Rodent Models

Date Issued
2024-04-04
Author(s)
Negrón, Sergio  
Facultad de Ciencias  
Ignacio Negrón-Oyarzo
Tatiana Dib
Lorena Chacana-Véliz
Nélida López-Quilodrán
Jocelyn Urrutia-Piñones
DOI
10.3389/fncir.2024.1286111
WoS ID
WOS:001204084200001
Abstract
Cognitive control of behavior is crucial for well-being, as allows subject to adapt to changing environments in a goal-directed way. Changes in cognitive control of behavior is observed during cognitive decline in elderly and in pathological mental conditions. Therefore, the recovery of cognitive control may provide a reliable preventive and therapeutic strategy. However, its neural basis is not completely understood. Cognitive control is supported by the prefrontal cortex, structure that integrates relevant information for the appropriate organization of behavior. At neurophysiological level, it is suggested that cognitive control is supported by local and large-scale synchronization of oscillatory activity patterns and neural spiking activity between the prefrontal cortex and distributed neural networks. In this review, we focus mainly on rodent models approaching the neuronal origin of these prefrontal patterns, and the cognitive and behavioral relevance of its coordination with distributed brain systems. We also examine the relationship between cognitive control and neural activity patterns in the prefrontal cortex, and its role in normal cognitive decline and pathological mental conditions. Finally, based on these body of evidence, we propose a common mechanism that may underlie the impaired cognitive control of behavior.
Subjects

Cellular And Molecula...

Cognitive Neuroscienc...

Neurosciences

Neuroscience

Sensory Systems

OCDE Subjects

Medical And Health Sc...

Quartile (Date Issued)
Q3
License
acceso abierto
Open Science Path
https://creativecommons.org/licenses/by/4.0/

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