Literature DB >> 30381436

Specific Basal Forebrain-Cortical Cholinergic Circuits Coordinate Cognitive Operations.

Laszlo Záborszky1, Peter Gombkoto2, Peter Varsanyi2, Matthew R Gielow2, Gina Poe3, Lorna W Role4, Mala Ananth5, Prithviraj Rajebhosale5, David A Talmage6, Michael E Hasselmo7, Holger Dannenberg7, Victor H Minces8, Andrea A Chiba8.   

Abstract

Based on recent molecular genetics, as well as functional and quantitative anatomical studies, the basal forebrain (BF) cholinergic projections, once viewed as a diffuse system, are emerging as being remarkably specific in connectivity. Acetylcholine (ACh) can rapidly and selectively modulate activity of specific circuits and ACh release can be coordinated in multiple areas that are related to particular aspects of cognitive processing. This review discusses how a combination of multiple new approaches with more established techniques are being used to finally reveal how cholinergic neurons, together with other BF neurons, provide temporal structure for behavior, contribute to local cortical state regulation, and coordinate activity between different functionally related cortical circuits. ACh selectively modulates dynamics for encoding and attention within individual cortical circuits, allows for important transitions during sleep, and shapes the fidelity of sensory processing by changing the correlation structure of neural firing. The importance of this system for integrated and fluid behavioral function is underscored by its disease-modifying role; the demise of BF cholinergic neurons has long been established in Alzheimer's disease and recent studies have revealed the involvement of the cholinergic system in modulation of anxiety-related circuits. Therefore, the BF cholinergic system plays a pivotal role in modulating the dynamics of the brain during sleep and behavior, as foretold by the intricacies of its anatomical map.
Copyright © 2018 the authors 0270-6474/18/389446-13$15.00/0.

Entities:  

Keywords:  basal forebrain population dynamics; cholinergic engram of fear; cortico-cortical coherence; dynamics of encoding and retrieval; signal and noise correlation

Mesh:

Year:  2018        PMID: 30381436      PMCID: PMC6209837          DOI: 10.1523/JNEUROSCI.1676-18.2018

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  181 in total

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10.  Acetylcholine dynamically controls spatial integration in marmoset primary visual cortex.

Authors:  M J Roberts; W Zinke; K Guo; R Robertson; J S McDonald; A Thiele
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  31 in total

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4.  Neonatal ethanol causes profound reduction of cholinergic cell number in the basal forebrain of adult animals.

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7.  Adaptive integration of self-motion and goals in posterior parietal cortex.

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Review 8.  The role of acetylcholine in negative encoding bias: Too much of a good thing?

Authors:  Yann S Mineur; Marina R Picciotto
Journal:  Eur J Neurosci       Date:  2019-12-24       Impact factor: 3.386

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10.  Diffusion MRI detects basal forebrain cholinergic abnormalities in the 3xTg-AD mouse model of Alzheimer's disease.

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