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Neostriatum gabaergic interneuron

Electrophysiological properties of Neostriatum gabaergic interneurons from literature:

  • Reports: Blue dots indicate human-curated values; Orange dots indicate non-human curated values
  • Mean+SD: mean and standard deviation of human-curated neuron measurements
  • All neurons: mean and standard deviation computed over all neurons in database
  • Interactivity:
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  • Legend: Blue dots = text-mined values human curated; Orange dots = text-mined values not human curated

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Articles with extracted electrophysiology properties:

Article Title Authors Journal Year Electrophys values Neuron types
GABAergic interneurons in the mouse lateral amygdala: a classification study. (NeuroElectro data) (PubMed) Sosulina L; Graebenitz S; Pape HC J. Neurophysiol. 2010 54 2
Distinct roles of GABAergic interneurons in the regulation of striatal output pathways. (NeuroElectro data) (PubMed) Gittis AH; Nelson AB; Thwin MT; Palop JJ; Kreitzer AC J. Neurosci. 2010 20 3
Quantitative estimate of synaptic inputs to striatal neurons during up and down states in vitro. (NeuroElectro data) (PubMed) Blackwell KT; Czubayko U; Plenz D J. Neurosci. 2003 14 2
Up and down states in striatal medium spiny neurons simultaneously recorded with spontaneous activity in fast-spiking interneurons studied in cortex-striatum-substantia nigra organotypic cultures. (NeuroElectro data) (PubMed) Plenz D; Kitai ST J. Neurosci. 1998 24 2
Cell-specific spike-timing-dependent plasticity in GABAergic and cholinergic interneurons in corticostriatal rat brain slices. (NeuroElectro data) (PubMed) Fino E; Deniau JM; Venance L J. Physiol. (Lond.) 2008 36 3
Epilepsy-induced abnormal striatal plasticity in Bassoon mutant mice. (NeuroElectro data) (PubMed) Ghiglieri V; Picconi B; Sgobio C; Bagetta V; Barone I; Paillè V; Di Filippo M; Polli F; Gardoni F; Altrock W; Gundelfinger ED; De Sarro G; Bernardi G; Ammassari-Teule M; Di Luca M; Calabresi P Eur. J. Neurosci. 2009 8 2
Enhanced high-frequency membrane potential fluctuations control spike output in striatal fast-spiking interneurones in vivo. (NeuroElectro data) (PubMed) Schulz JM; Pitcher TL; Savanthrapadian S; Wickens JR; Oswald MJ; Reynolds JN J. Physiol. (Lond.) 2011 29 3
Functional and molecular development of striatal fast-spiking GABAergic interneurons and their cortical inputs. (NeuroElectro data) (PubMed) Plotkin JL; Wu N; Chesselet MF; Levine MS Eur. J. Neurosci. 2005 28 2
Receptor subtype-specific modulation by dopamine of glutamatergic responses in striatal medium spiny neurons. (NeuroElectro data) (PubMed) Lin JY; Dubey R; Funk GD; Lipski J Brain Res. 2003 18 3
Membrane properties and synaptic connectivity of fast-spiking interneurons in rat ventral striatum. (NeuroElectro data) (PubMed) Taverna S; Canciani B; Pennartz CM Brain Res. 2007 16 2
Heterogeneity of spike frequency adaptation among medium spiny neurones from the rat striatum. (NeuroElectro data) (PubMed) Venance L; Glowinski J Neuroscience 2003 43 3
Dynamics of action potential firing in electrically connected striatal fast-spiking interneurons. (NeuroElectro data) (PubMed) Russo G; Nieus TR; Maggi S; Taverna S Front Cell Neurosci 2013 24 1
Novel Striatal GABAergic Interneuron Populations Labeled in the 5HT3aEGFP Mouse. (NeuroElectro data) (PubMed) Muñoz-Manchado AB; Foldi C; Szydlowski S; Sjulson L; Farries M; Wilson C; Silberberg G; Hjerling-Leffler J Cereb. Cortex 2014 27 1
Novel fast adapting interneurons mediate cholinergic-induced fast GABAA inhibitory postsynaptic currents in striatal spiny neurons. (NeuroElectro data) (PubMed) Faust TW; Assous M; Shah F; Tepper JM; Koós T Eur. J. Neurosci. 2015 12 1
Novel interneuronal network in the mouse posterior piriform cortex. (NeuroElectro data) (PubMed) Zhang C; Szabó G; Erdélyi F; Rose JD; Sun QQ J. Comp. Neurol. 2006 5 1
Acetylcholine encodes long-lasting presynaptic plasticity at glutamatergic synapses in the dorsal striatum after repeated amphetamine exposure. (NeuroElectro data) (PubMed) Wang W; Darvas M; Storey GP; Bamford IJ; Gibbs JT; Palmiter RD; Bamford NS J. Neurosci. 2013 27 2

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