Literature DB >> 24949967

Natural neural projection dynamics underlying social behavior.

Lisa A Gunaydin1, Logan Grosenick2, Joel C Finkelstein1, Isaac V Kauvar1, Lief E Fenno2, Avishek Adhikari1, Stephan Lammel3, Julie J Mirzabekov1, Raag D Airan1, Kelly A Zalocusky2, Kay M Tye1, Polina Anikeeva1, Robert C Malenka3, Karl Deisseroth4.   

Abstract

Social interaction is a complex behavior essential for many species and is impaired in major neuropsychiatric disorders. Pharmacological studies have implicated certain neurotransmitter systems in social behavior, but circuit-level understanding of endogenous neural activity during social interaction is lacking. We therefore developed and applied a new methodology, termed fiber photometry, to optically record natural neural activity in genetically and connectivity-defined projections to elucidate the real-time role of specified pathways in mammalian behavior. Fiber photometry revealed that activity dynamics of a ventral tegmental area (VTA)-to-nucleus accumbens (NAc) projection could encode and predict key features of social, but not novel object, interaction. Consistent with this observation, optogenetic control of cells specifically contributing to this projection was sufficient to modulate social behavior, which was mediated by type 1 dopamine receptor signaling downstream in the NAc. Direct observation of deep projection-specific activity in this way captures a fundamental and previously inaccessible dimension of mammalian circuit dynamics.
Copyright © 2014 Elsevier Inc. All rights reserved.

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Year:  2014        PMID: 24949967      PMCID: PMC4123133          DOI: 10.1016/j.cell.2014.05.017

Source DB:  PubMed          Journal:  Cell        ISSN: 0092-8674            Impact factor:   41.582


  55 in total

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