| Literature DB >> 26878381 |
Christina K Kim1, Samuel J Yang2, Nandini Pichamoorthy3, Noah P Young3, Isaac Kauvar2, Joshua H Jennings3, Talia N Lerner3, Andre Berndt3, Soo Yeun Lee3, Charu Ramakrishnan3, Thomas J Davidson3, Masatoshi Inoue4,5, Haruhiko Bito4,5, Karl Deisseroth3,6,7.
Abstract
Real-time activity measurements from multiple specific cell populations and projections are likely to be important for understanding the brain as a dynamical system. Here we developed frame-projected independent-fiber photometry (FIP), which we used to record fluorescence activity signals from many brain regions simultaneously in freely behaving mice. We explored the versatility of the FIP microscope by quantifying real-time activity relationships among many brain regions during social behavior, simultaneously recording activity along multiple axonal pathways during sensory experience, performing simultaneous two-color activity recording, and applying optical perturbation tuned to elicit dynamics that match naturally occurring patterns observed during behavior.Entities:
Mesh:
Year: 2016 PMID: 26878381 PMCID: PMC5717315 DOI: 10.1038/nmeth.3770
Source DB: PubMed Journal: Nat Methods ISSN: 1548-7091 Impact factor: 28.547