41 |
Effects of eugenol on the firing of action potentials in NG108-15 neurons (Huang et al. 2011) |
42 |
Efffect of propofol on potassium current in cardiac H9c2 cells (Liu et al. 2008) |
43 |
Elementary mechanisms producing facilitation of Cav2.1 (P/Q-type) channels |
44 |
Endocannabinoid dynamics gate spike-timing dependent depression and potentiation (Cui et al 2016) |
45 |
Evaluation of stochastic diff. eq. approximation of ion channel gating models (Bruce 2009) |
46 |
Experimental and modeling studies of desensitization of P2X3 receptors (Sokolova et al. 2006) |
47 |
Febrile seizure-induced modifications to Ih (Chen et al 2001) |
48 |
Gap junction coupled network of striatal fast spiking interneurons (Hjorth et al. 2009) |
49 |
Globus pallidus neuron models with differing dendritic Na channel expression (Edgerton et al., 2010) |
50 |
HMM of Nav1.7 WT and F1449V (Gurkiewicz et al. 2011) |
51 |
Hodgkin-Huxley model of persistent activity in PFC neurons (Winograd et al. 2008) (NEURON python) |
52 |
Hodgkin-Huxley model of persistent activity in prefrontal cortex neurons (Winograd et al. 2008) |
53 |
Hodgkin-Huxley models of different classes of cortical neurons (Pospischil et al. 2008) |
54 |
Hodgkin–Huxley model with fractional gating (Teka et al. 2016) |
55 |
Honey bee receptor and antennal lobe model (Chan et al 2018) |
56 |
Hypocretin and Locus Coeruleus model neurons (Carter et al 2012) |
57 |
Hysteresis in voltage gating of HCN channels (Elinder et al 2006, Mannikko et al 2005) |
58 |
Intrinsic sensory neurons of the gut (Chambers et al. 2014) |
59 |
Ion channel modeling with whole cell and a genetic algorithm (Gurkiewicz and Korngreen 2007) |
60 |
IP3R model comparison (Hituri and Linne 2013) |
61 |
Kinetic properties of voltage gated Na channel (Nayak and Sikdar 2007) |
62 |
Kinetics of the P2X7 receptor as expressed in Xenopus oocytes (Riedel et al. 2007a,b) |
63 |
KV1 channel governs cerebellar output to thalamus (Ovsepian et al. 2013) |
64 |
Kv4.3, Kv1.4 encoded K(+) channel in heart cells (Greenstein et al 2000) (XPP) |
65 |
Large scale model of the olfactory bulb (Yu et al., 2013) |
66 |
Look-Up Table Synapse (LUTsyn) models for AMPA and NMDA (Pham et al., 2021) |
67 |
Markov models of SCN1A (NaV1.1) applied to abnormal gating and epilepsy (Clancy and Kass 2004) |
68 |
Markovian model for cardiac sodium channel (Clancy, Rudy 2002) |
69 |
Markovian model for single-channel recordings of Ik_1 in ventricular cells (Matsuoka et al 2003) |
70 |
Membrane electrical properties of mouse CA1 pyramidal cells during strong inputs (Bianchi et al 22) |
71 |
Na+ Signals in olfactory bulb neurons (granule cell model) (Ona-Jodar et al. 2017) |
72 |
Neocortical Layer I: I-A and I-K (Zhou, Hablitz 1996) |
73 |
NeuroGPU example on L5_TTPC1_cADpyr232_1 (Ben-Shalom 2022)(Ramaswamy et al., 2015) |
74 |
Neurophysiological impact of inactivation pathways in A-type K+ channels (Fineberg et al 2012) |
75 |
Neuroprotective Role of Gap Junctions in a Neuron Astrocyte Network Model (Huguet et al 2016) |
76 |
Nicotinic control of dopamine release in nucleus accumbens (Maex et al. 2014) |
77 |
Novel Na current with slow de-inactivation (Tsutsui, Oka 2002) |
78 |
Olfactory Mitral Cell: I-A and I-K currents (Wang et al 1996) |
79 |
Olfactory Periglomerular Cells: I-h kinetics (Cadetti, Belluzzi 2001) |
80 |
On stochastic diff. eq. models for ion channel noise in Hodgkin-Huxley neurons (Goldwyn et al. 2010) |