TITLE slowly activated potassium Kv2 (Kv2.1) channel for GPe neuron COMMENT modeled by Gunay et al., 2008 implemented in NEURON by Kitano, 2011 ENDCOMMENT UNITS { (mV) = (millivolt) (mA) = (milliamp) } NEURON { SUFFIX Kv2 USEION k READ ek WRITE ik RANGE gmax, iKv2 } PARAMETER { v (mV) dt (ms) gmax = 0.001 (mho/cm2) iKv2 = 0.0 (mA/cm2) ek (mV) theta_m = -33.2 (mV) k_m = 9.1 (mV) tau_m0 = 0.1 (ms) tau_m1 = 3.0 (ms) phi_m = -33.2 (mV) sigma_m0 = 21.7 (mV) sigma_m1 = -13.9 (mV) h0 = 0.2 theta_h = -20.0 (mV) k_h = -10.0 (mV) tauh = 3400.0 (ms) } STATE { m h } ASSIGNED { ik (mA/cm2) minf taum (ms) hinf } BREAKPOINT { SOLVE states METHOD cnexp ik = gmax*m*m*m*m*h*(v-ek) iKv2 = ik } UNITSOFF INITIAL { settables(v) m = minf h = hinf } DERIVATIVE states { settables(v) m' = (minf - m)/taum h' = (hinf - h)/tauh } PROCEDURE settables(v) { TABLE minf, taum, hinf FROM -100 TO 100 WITH 400 minf = 1.0 / (1.0 + exp((theta_m - v)/k_m)) taum = tau_m0 + (tau_m1 - tau_m0)/(exp((phi_m - v)/sigma_m0) + exp((phi_m - v)/sigma_m1)) hinf = h0 + (1.0 - h0) / (1.0 + exp((theta_h - v)/k_h)) } UNITSON