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Reference cited by multiple papers
Du W, Bautista JF, Yang H, Diez-Sampedro A, You SA, Wang L, Kotagal P, Lüders HO, Shi J, Cui J, Richerson GB, Wang QK (2005) Calcium-sensitive potassium channelopathy in human epilepsy and paroxysmal movement disorder.
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Gu N, Vervaeke K, Storm JF (2007)
BK potassium channels facilitate high-frequency firing and cause early spike frequency adaptation in rat CA1 hippocampal pyramidal cells.
Huang CW, Huang CC, Wu SN (2007)
Activation by zonisamide, a newer antiepileptic drug, of large-conductance calcium-activated potassium channel in differentiated hippocampal neuron-derived H19-7 cells.
J Pharmacol Exp Ther
Zonisamide-induced inhibition of the firing of APs in hippocampal neurons (Huang et al. 2007) [Model]
Jaffe DB, Brenner R (2018)
A computational model for how the fast afterhyperpolarization paradoxically increases gain in regularly firing neurons.
Paradoxical effect of fAHP amplitude on gain in dentate gyrus granule cells (Jaffe & Brenner 2018) [Model]
Jaffe DB, Wang B, Brenner R (2011)
Shaping of action potentials by type I and type II large-conductance Ca²+-activated K+ channels.
Shaping of action potentials by different types of BK channels (Jaffe et al., 2011) [Model]
Miceli F, Soldovieri MV, Ambrosino P, De Maria M, Migliore M, Migliore R, Taglialatela M (2015)
Early-onset epileptic encephalopathy caused by gain-of-function mutations in the voltage sensor of Kv7.2 and Kv7.3 potassium channel subunits.
Early-onset epileptic encephalopathy (Miceli et al. 2015) [Model]