File:AdExDiagram.png
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AdExDiagram.png (500 × 180 pixels, file size: 12 KB, MIME type: image/png)
Behavior of the AdEx model as a function of \(a/g_L\) and \(\tau_m/\tau_w\) (where \(\tau_m=C/g_L\)). Light colors indicate loss of stability via saddle-node bifurcation and dark colors via subcritical Andronov-Hopf bifurcation. Subcritical Andronov-Hopf corresponds to f-I curves of type II, whereas saddle-node bifurcations can lead to type I or II. Blue: resonator mode (oscillations for any or almost any input current I). Green: integrator mode (no oscillation for any I). Pink: mixed mode (resonator if I is large enough, otherwise integrator).
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 10:42, 14 January 2009 | ![]() | 500 × 180 (12 KB) | Romain Brette (Talk | contribs) | |
10:37, 14 January 2009 | ![]() | 500 × 180 (12 KB) | Romain Brette (Talk | contribs) | Behavior of the AdEx model as a function of a/g_L and \tau_m/\tau_w (where \tau_m=C/g_L). Light colors indicate loss of stability via saddle-node bifurcation and dark colors via subcritical Andronov-Hopf bifurcation. Subcritical Andronov-Hopf corresponds | |
16:47, 7 January 2009 | ![]() | 500 × 180 (12 KB) | Romain Brette (Talk | contribs) | Behavior of the AdEx model as a function of <math>a=g_L</math> and <math>\tau_m=\tau_w</math> (where <math>\tau_m=C/g_L</math>). Light (dark) colors indicate type I (type II) excitability. Blue: resonator mode (oscillations for any or almost any input cur |
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