Model directory: neuron ======================= The model directory is organized and autogenerated by keywords (e.g., adaptive threshold, conductance-based etc.). Models that contain a specific keyword will be listed under that word. For more information on models, see our :ref:`intro to NEST models `. :doc:`Clopath Plasticity ` ---------------------------------------------------- * :doc:`aeif_psc_delta_clopath` * :doc:`hh_psc_alpha_clopath` :doc:`Hill-Tononi Plasticity ` ------------------------------------------------------------ * :doc:`ht_neuron` :doc:`Hodgkin-Huxley ` -------------------------------------------- * :doc:`hh_cond_beta_gap_traub` * :doc:`hh_cond_exp_traub` * :doc:`hh_psc_alpha` * :doc:`hh_psc_alpha_clopath` * :doc:`hh_psc_alpha_gap` :doc:`Adaptive Threshold ` ---------------------------------------------------- * :doc:`aeif_cond_alpha` * :doc:`aeif_cond_alpha_multisynapse` * :doc:`aeif_cond_beta_multisynapse` * :doc:`aeif_cond_exp` * :doc:`aeif_psc_alpha` * :doc:`aeif_psc_delta` * :doc:`aeif_psc_delta_clopath` * :doc:`aeif_psc_exp` :doc:`Binary ` ---------------------------- * :doc:`erfc_neuron` * :doc:`ginzburg_neuron` * :doc:`mcculloch_pitts_neuron` :doc:`Compartmental Model ` ------------------------------------------------------ * :doc:`cm_default` :doc:`Conductance-Based ` -------------------------------------------------- * :doc:`aeif_cond_alpha` * :doc:`aeif_cond_alpha_multisynapse` * :doc:`aeif_cond_beta_multisynapse` * :doc:`aeif_cond_exp` * :doc:`gif_cond_exp` * :doc:`gif_cond_exp_multisynapse` * :doc:`hh_cond_beta_gap_traub` * :doc:`hh_cond_exp_traub` * :doc:`iaf_chxk_2008` * :doc:`iaf_cond_alpha` * :doc:`iaf_cond_alpha_mc` * :doc:`iaf_cond_beta` * :doc:`iaf_cond_exp` * :doc:`iaf_cond_exp_sfa_rr` * :doc:`pp_cond_exp_mc_urbanczik` :doc:`Current-Based ` ------------------------------------------ * :doc:`aeif_psc_alpha` * :doc:`aeif_psc_delta` * :doc:`aeif_psc_delta_clopath` * :doc:`aeif_psc_exp` * :doc:`amat2_psc_exp` * :doc:`gif_pop_psc_exp` * :doc:`gif_psc_exp` * :doc:`gif_psc_exp_multisynapse` * :doc:`hh_psc_alpha` * :doc:`hh_psc_alpha_clopath` * :doc:`hh_psc_alpha_gap` * :doc:`iaf_psc_alpha` * :doc:`iaf_psc_alpha_multisynapse` * :doc:`iaf_psc_alpha_ps` * :doc:`iaf_psc_delta` * :doc:`iaf_psc_delta_ps` * :doc:`iaf_psc_exp` * :doc:`iaf_psc_exp_ps` * :doc:`iaf_psc_exp_ps_lossless` * :doc:`mat2_psc_exp` * :doc:`pp_psc_delta` :doc:`Gap Junction ` ---------------------------------------- * :doc:`hh_psc_alpha_gap` :doc:`Integrate-And-Fire ` ---------------------------------------------------- * :doc:`aeif_cond_alpha` * :doc:`aeif_cond_alpha_multisynapse` * :doc:`aeif_cond_beta_multisynapse` * :doc:`aeif_cond_exp` * :doc:`aeif_psc_alpha` * :doc:`aeif_psc_delta` * :doc:`aeif_psc_delta_clopath` * :doc:`aeif_psc_exp` * :doc:`amat2_psc_exp` * :doc:`gif_cond_exp` * :doc:`gif_cond_exp_multisynapse` * :doc:`gif_pop_psc_exp` * :doc:`gif_psc_exp` * :doc:`gif_psc_exp_multisynapse` * :doc:`iaf_chs_2007` * :doc:`iaf_chxk_2008` * :doc:`iaf_cond_alpha` * :doc:`iaf_cond_alpha_mc` * :doc:`iaf_cond_beta` * :doc:`iaf_cond_exp` * :doc:`iaf_cond_exp_sfa_rr` * :doc:`iaf_psc_alpha` * :doc:`iaf_psc_alpha_multisynapse` * :doc:`iaf_psc_alpha_ps` * :doc:`iaf_psc_delta` * :doc:`iaf_psc_delta_ps` * :doc:`iaf_psc_exp` * :doc:`iaf_psc_exp_htum` * :doc:`iaf_psc_exp_multisynapse` * :doc:`iaf_psc_exp_ps` * :doc:`iaf_psc_exp_ps_lossless` * :doc:`izhikevich` * :doc:`mat2_psc_exp` :doc:`Parrot ` ---------------------------- * :doc:`parrot_neuron` * :doc:`parrot_neuron_ps` :doc:`Point Process ` ------------------------------------------ * :doc:`pp_cond_exp_mc_urbanczik` * :doc:`pp_psc_delta` :doc:`Precise ` ------------------------------ * :doc:`iaf_chxk_2008` * :doc:`iaf_psc_alpha_ps` * :doc:`iaf_psc_delta_ps` * :doc:`iaf_psc_exp_ps` * :doc:`iaf_psc_exp_ps_lossless` * :doc:`parrot_neuron_ps` :doc:`Rate ` ------------------------ * :doc:`gauss_rate` * :doc:`lin_rate` * :doc:`rate_neuron_ipn` * :doc:`rate_neuron_opn` * :doc:`rate_transformer_node` * :doc:`siegert_neuron` * :doc:`sigmoid_rate` * :doc:`sigmoid_rate_gg_1998` * :doc:`tanh_rate` * :doc:`threshold_lin_rate`