create a a {nseg=1 diam=20 L=20 insert klt ek_klt=-77 insert pas g_pas=1/10000 Ra=150 cm=1} access a tstop=100 vlow=-120 vhigh=30 dt=0.1 celsius=22 usetable_klt = 0 frac=0 color=1 objref gk, b,gt,vc, gs,c, gf,ic b = new VBox() c = new VBox() b.intercept(1) gk = new Graph(0) gk.view(vlow,0,vhigh-vlow,1,0,0,100,200) gk.exec_menu("New Axis") gk.exec_menu("10% Zoom out") gk.label(0.1,0.9,"klt: steady-state activation (w, z)") gk.addexpr("winf_klt",1,2, 2*tstop,0,2) gk.addexpr("zinf_klt",2,2, 2*tstop,0,2) gt = new Graph(0) gt.view(vlow,0,vhigh-vlow,30,0,0,100,200) gt.exec_menu("New Axis") gt.exec_menu("10% Zoom out") gt.label(0.1,0.9,"klt: w, z (*1/20) time constants") gt.addexpr("wtau_klt",1,2, 2*tstop,0,2) gt.addexpr("ztau_klt*0.05",2,2, 2*tstop,0,2) gs = new Graph(0) gs.view(0,-70,150,50,0,0,100,200) gs.exec_menu("New Axis") gs.exec_menu("10% Zoom out") gs.label(0.1,0.9,"+0.1 nA current injection") gs.exec_menu("Keep Lines") xpanel("") xbutton("run ", "run()") xvalue("color","color",1) xpanel() b.intercept(0) b.map("ILT Kinetics (Rothman and Manis, 2003c)",100,0,200,600) c.intercept(1) gf = new Graph(0) gf.view(0,-2,150,17,0,0,100,100) gf.exec_menu("New Axis") gf.exec_menu("10% Zoom out") gf.label(0.4,0.95,"klt current (nA)") gf.label(0.3,0.08,"-120mV ") gf.label(0.3,0.85,"+30mV ") gf.exec_menu("Keep Lines") c.intercept(0) c.map("ILT Voltage Clamp Currents",390,0,500,370) vc = new SEClamp(0.5) ic = new IClamp(0.5) proc run() { gk.begin() for (v=vlow; v=-100) { t=0 vc.amp1=-62 vc.dur1=5 vc.amp2=k vc.dur2=ic.dur vc.amp3=-45 vc.dur3=50 forall {finitialize(-62)} fcurrent() while (t