Literature DB >> 31591960

Structured inhibitory activity dynamics in new virtual environments.

Moises Arriaga1, Edward B Han1.   

Abstract

Inhibition plays a powerful role in regulating network excitation and plasticity; however, the activity of defined interneuron types during spatial exploration remain poorly understood. Using two-photon calcium imaging, we recorded hippocampal CA1 somatostatin- and parvalbumin-expressing interneurons as mice performed a goal-directed spatial navigation task in new visual virtual reality (VR) contexts. Activity in both interneuron classes was strongly suppressed but recovered as animals learned to adapt the previously learned task to the new spatial context. Surprisingly, although there was a range of activity suppression across the population, individual somatostatin-expressing interneurons showed consistent levels of activity modulation across exposure to multiple novel environments, suggesting context-independent, stable network roles during spatial exploration. This work reveals population-level temporally dynamic interneuron activity in new environments, within which each interneuron shows stable and consistent activity modulation.
© 2019, Arriaga and Han.

Entities:  

Keywords:  calcium imaging; circuits; hippocampus; inhibition; learning; mouse; neuroscience; virtual reality

Mesh:

Substances:

Year:  2019        PMID: 31591960      PMCID: PMC6850773          DOI: 10.7554/eLife.47611

Source DB:  PubMed          Journal:  Elife        ISSN: 2050-084X            Impact factor:   8.140


  89 in total

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  4 in total

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Review 4.  Somatostatin and Somatostatin-Containing Interneurons-From Plasticity to Pathology.

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  4 in total

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