Person:
Parot, Vicente

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Parot

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Vicente

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Parot, Vicente

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    Genetically Targeted All-Optical Electrophysiology with a Transgenic Cre-Dependent Optopatch Mouse
    (Society for Neuroscience, 2016) Lou, Shan; Adam, Yoav; Weinstein, Eli; Williams, E.; Williams, K.; Parot, Vicente; Kavokine, N.; Liberles, Stephen; Madisen, L.; Zeng, H.; Cohen, Adam
    Recent advances in optogenetics have enabled simultaneous optical perturbation and optical readout of membrane potential in diverse cell types. Here, we develop and characterize a Cre-dependent transgenic Optopatch2 mouse line that we call Floxopatch. The animals expressed a blue-shifted channelrhodopsin, CheRiff, and a near infrared Archaerhodopsin-derived voltage indicator, QuasAr2, via targeted knock-in at the rosa26 locus. In Optopatch-expressing animals, we tested for overall health, genetically targeted expression, and function of the optogenetic components. In offspring of Floxopatch mice crossed with a variety of Cre driver lines, we observed spontaneous and optically evoked activity in vitro in acute brain slices and in vivo in somatosensory ganglia. Cell-type-specific expression allowed classification and characterization of neuronal subtypes based ontheir firing patterns. The Floxopatch mouse line is a usefultool for fast and sensitive characterization of neural activity in genetically specified cell types in intact tissue.