Literature DB >> 31178115

Widespread and Highly Correlated Somato-dendritic Activity in Cortical Layer 5 Neurons.

Lou Beaulieu-Laroche1, Enrique H S Toloza1, Norma J Brown1, Mark T Harnett2.   

Abstract

Dendritic integration can expand the information-processing capabilities of neurons. However, the recruitment of active dendritic processing in vivo and its relationship to somatic activity remain poorly understood. Here, we use two-photon GCaMP6f imaging to simultaneously monitor dendritic and somatic compartments in the awake primary visual cortex. Activity in layer 5 pyramidal neuron somata and distal apical trunk dendrites shows surprisingly high functional correlation. This strong coupling persists across neural activity levels and is unchanged by visual stimuli and locomotion. Ex vivo combined somato-dendritic patch-clamp and GCaMP6f recordings indicate that dendritic signals specifically reflect local electrogenesis triggered by dendritic inputs or high-frequency bursts of somatic action potentials. In contrast to the view that dendrites are only sparsely recruited under highly specific conditions in vivo, our results provide evidence that active dendritic integration is a widespread and intrinsic feature of cortical computation.
Copyright © 2019 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  GCaMP6f; V1; calcium imaging; correlated activity; correlation; cortex; dendrite; dendritic spike; layer 5

Mesh:

Substances:

Year:  2019        PMID: 31178115      PMCID: PMC6639136          DOI: 10.1016/j.neuron.2019.05.014

Source DB:  PubMed          Journal:  Neuron        ISSN: 0896-6273            Impact factor:   17.173


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5.  Adrenergic Modulation Regulates the Dendritic Excitability of Layer 5 Pyramidal Neurons In Vivo.

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9.  Enhanced Dendritic Compartmentalization in Human Cortical Neurons.

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10.  High and asymmetric somato-dendritic coupling of V1 layer 5 neurons independent of visual stimulation and locomotion.

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