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Thalamus relay cell (Definition)

Electrophysiological properties of Thalamus relay cells 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
Expression of a functional hyperpolarization-activated current (Ih) in the mouse nucleus reticularis thalami. (NeuroElectro data) (PubMed) Rateau Y; Ropert N J. Neurophysiol. 2006 10 2
Differential regulation of action potential firing in adult murine thalamocortical neurons by Kv3.2, Kv1, and SK potassium and N-type calcium channels. (NeuroElectro data) (PubMed) Kasten MR; Rudy B; Anderson MP J. Physiol. (Lond.) 2007 10 1
Distinct firing properties of higher order thalamic relay neurons. (NeuroElectro data) (PubMed) Li J; Bickford ME; Guido W J. Neurophysiol. 2003 15 2
Development of firing patterns and electrical properties in neurons of the rat ventrobasal thalamus. (NeuroElectro data) (PubMed) Perez Velazquez JL; Carlen PL Brain Res. Dev. Brain Res. 1996 3 1
Dopamine modulates the responsivity of mediodorsal thalamic cells recorded in vitro. (NeuroElectro data) (PubMed) Lavin A; Grace AA J. Neurosci. 1998 12 1
Ca2+-dependent and Na+-dependent K+ conductances contribute to a slow AHP in thalamic paraventricular nucleus neurons: a novel target for orexin receptors. (NeuroElectro data) (PubMed) Zhang L; Kolaj M; Renaud LP J. Neurophysiol. 2010 24 6
Excitatory but not inhibitory synaptic transmission is reduced in lethargic (Cacnb4(lh)) and tottering (Cacna1atg) mouse thalami. (NeuroElectro data) (PubMed) Caddick SJ; Wang C; Fletcher CF; Jenkins NA; Copeland NG; Hosford DA J. Neurophysiol. 1999 4 1
Synaptic properties of thalamic input to the subgranular layers of primary somatosensory and auditory cortices in the mouse. (NeuroElectro data) (PubMed) Viaene AN; Petrof I; Sherman SM J. Neurosci. 2011 2 1
Activity of ventral medial thalamic neurons during absence seizures and modulation of cortical paroxysms by the nigrothalamic pathway. (NeuroElectro data) (PubMed) Paz JT; Chavez M; Saillet S; Deniau JM; Charpier S J. Neurosci. 2007 6 1
In vivo intracellular responses of the medial geniculate neurones to acoustic stimuli in anaesthetized guinea pigs. (NeuroElectro data) (PubMed) Yu YQ; Xiong Y; Chan YS; He J J. Physiol. (Lond.) 2004 2 1
The ventral and dorsal lateral geniculate nucleus of the rat: intracellular recordings in vitro. (NeuroElectro data) (PubMed) Crunelli V; Kelly JS; Leresche N; Pirchio M J. Physiol. (Lond.) 1987 4 1
Electrophysiological properties of guinea-pig thalamic neurones: an in vitro study. (NeuroElectro data) (PubMed) Jahnsen H; Llinás R J. Physiol. (Lond.) 1984 4 1
Alterations in GABA(A) receptor mediated inhibition in adjacent dorsal midline thalamic nuclei in a rat model of chronic limbic epilepsy. (NeuroElectro data) (PubMed) Rajasekaran K; Kapur J; Bertram EH J. Neurophysiol. 2007 8 1
VPM and PoM nuclei of the rat somatosensory thalamus: intrinsic neuronal properties and corticothalamic feedback. (NeuroElectro data) (PubMed) Landisman CE; Connors BW Cereb. Cortex 2007 12 1
Impaired action potential initiation in GABAergic interneurons causes hyperexcitable networks in an epileptic mouse model carrying a human Na(V)1.1 mutation. (NeuroElectro data) (PubMed) Hedrich UB; Liautard C; Kirschenbaum D; Pofahl M; Lavigne J; Liu Y; Theiss S; Slotta J; Escayg A; Dihné M; Beck H; Mantegazza M; Lerche H J. Neurosci. 2014 35 6
Enhanced GABAA-Mediated Tonic Inhibition in Auditory Thalamus of Rats with Behavioral Evidence of Tinnitus. (NeuroElectro data) (PubMed) Sametsky EA; Turner JG; Larsen D; Ling L; Caspary DM J. Neurosci. 2015 8 1
Electroresponsive properties of rat central medial thalamic neurons. (NeuroElectro data) (PubMed) Jhangiani-Jashanmal IT; Yamamoto R; Gungor NZ; Paré D J. Neurophysiol. 2016 34 2

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