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Classification of electrophysiological and morphological neuron types in the mouse visual cortex.

Nathan W GouwensStaci A SorensenJim BergChangkyu LeeTim JarskyJonathan TingSusan M SunkinDavid FengCostas A AnastassiouEliza BarkanKris BickleyNicole BlesieThomas BraunKrissy BrounerAgata BudzilloShiella CaldejonTamara CasperDan CastelliPeter ChongKirsten CrichtonChristine CuhaciyanTanya L DaigleRachel DalleyNick DeeTsega DestaSong-Lin DingSamuel DingmanAlyse DoperalskiNadezhda I DotsonTom EgdorfMichael FisherRebecca A de FratesEmma GarrenMarissa GarwoodAmanda GaryNathalie GaudreaultKeith GodfreyMelissa GorhamHong GuCaroline HabelKristen HadleyJames HarringtonJulie A HarrisAlex HenryDiJon HillSam JosephsenSara KebedeLisa KimMatthew KrollBrian LeeTracy LemonKatherine E LinkXiaoxiao LiuBrian LongRusty MannMedea McGrawSamuel D GaleAlice MukoraGabe J MurphyLindsay NgKiet NgoThuc Nghi NguyenPhilip R NicovichAaron OldreDaniel ParkSheana ParryJed PerkinsLydia PotekhinaDavid ReidMiranda RobertsonDavid SandmanMartin SchroedterCliff SlaughterbeckGilberto J Soler-LlavinaJosef SulcAaron SzaferBosiljka TasicNaz TaskinCorinne TeeterNivretta ThatraHerman TungWayne WakemanGrace WilliamsRob YoungZhi ZhouColin FarrellHanchuan PengMichael J HawrylyczEd S LeinLydia NgAnton ArkhipovAmy BernardJohn W PhillipsHongkui ZengChristof Koch
Published in: Nature neuroscience (2019)
Understanding the diversity of cell types in the brain has been an enduring challenge and requires detailed characterization of individual neurons in multiple dimensions. To systematically profile morpho-electric properties of mammalian neurons, we established a single-cell characterization pipeline using standardized patch-clamp recordings in brain slices and biocytin-based neuronal reconstructions. We built a publicly accessible online database, the Allen Cell Types Database, to display these datasets. Intrinsic physiological properties were measured from 1,938 neurons from the adult laboratory mouse visual cortex, morphological properties were measured from 461 reconstructed neurons, and 452 neurons had both measurements available. Quantitative features were used to classify neurons into distinct types using unsupervised methods. We established a taxonomy of morphologically and electrophysiologically defined cell types for this region of the cortex, with 17 electrophysiological types, 38 morphological types and 46 morpho-electric types. There was good correspondence with previously defined transcriptomic cell types and subclasses using the same transgenic mouse lines.
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