281 |
Rejuvenation model of dopamine neuron (Chan et al. 2007) |
282 |
Relating anatomical and biophysical properties to motoneuron excitabilty (Moustafa et al. 2023) |
283 |
Rhesus Monkey Layer 3 Pyramidal Neurons: Young vs aged PFC (Coskren et al. 2015) |
284 |
Rhesus Monkey Young and Aged L3 PFC Pyramidal Neurons (Rumbell et al. 2016) |
285 |
Robust and tunable bursting requires slow positive feedback (Franci et al 2018) |
286 |
Robust transmission in the inhibitory Purkinje Cell to Cerebellar Nuclei pathway (Abbasi et al 2017) |
287 |
Rod photoreceptor (Barnes and Hille 1989, Publio et al. 2006, Kourennyi and Liu et al. 2004) |
288 |
Role of afferent-hair cell connectivity in determining spike train regularity (Holmes et al 2017) |
289 |
Role of Ih in firing patterns of cold thermoreceptors (Orio et al., 2012) |
290 |
Role of the AIS in the control of spontaneous frequency of dopaminergic neurons (Meza et al 2017) |
291 |
Salamander retinal ganglian cells: morphology influences firing (Sheasby, Fohlmeister 1999) |
292 |
Salamander retinal ganglion cell: ion channels (Fohlmeister, Miller 1997) |
293 |
Schiz.-linked gene effects on intrinsic single-neuron excitability (Maki-Marttunen et al. 2016) |
294 |
SCZ-associated variant effects on L5 pyr cell NN activity and delta osc. (Maki-Marttunen et al 2018) |
295 |
Self-organized olfactory pattern recognition (Kaplan & Lansner 2014) |
296 |
Sensory-evoked responses of L5 pyramidal tract neurons (Egger et al 2020) |
297 |
Serotonergic modulation of Aplysia sensory neurons (Baxter et al 1999) |
298 |
Shaping NMDA spikes by timed synaptic inhibition on L5PC (Doron et al. 2017) |
299 |
Shaping of action potentials by different types of BK channels (Jaffe et al., 2011) |
300 |
Simulated light response in rod photoreceptors (Liu and Kourennyi 2004) |
301 |
Single neuron models of four types of L1 mouse Interneurons: Canpy, NGFC, alpha7 and VIP cells |
302 |
Single-cell comprehensive biophysical model of SN pars compacta (Muddapu & Chakravarthy 2021) |
303 |
Sleep-wake transitions in corticothalamic system (Bazhenov et al 2002) |
304 |
Specific inhibition of dendritic plateau potential in striatal projection neurons (Du et al 2017) |
305 |
Spike frequency adaptation in the LGMD (Peron and Gabbiani 2009) |
306 |
Spine fusion and branching affects synaptic response (Rusakov et al 1996, 1997) |
307 |
STD-dependent and independent encoding of Input irregularity as spike rate (Luthman et al. 2011) |
308 |
STDP depends on dendritic synapse location (Letzkus et al. 2006) |
309 |
Stochastic calcium mechanisms cause dendritic calcium spike variability (Anwar et al. 2013) |
310 |
Stochastic model for pituitary corticotrophs (Duncan et al., 2022) |
311 |
Striatal D1R medium spiny neuron, including a subcellular DA cascade (Lindroos et al 2018) |
312 |
Striatal Spiny Projection Neuron, inhibition enhances spatial specificity (Dorman et al 2018) |
313 |
Striatum D1 Striosome and Matrix Upstates (Prager et al., 2020) |
314 |
Studies of stimulus parameters for seizure disruption using NN simulations (Anderson et al. 2007) |
315 |
Sympathetic Preganglionic Neurone (Briant et al. 2014) |
316 |
Synaptic gating at axonal branches, and sharp-wave ripples with replay (Vladimirov et al. 2013) |
317 |
Synaptic integration in a model of granule cells (Gabbiani et al 1994) |
318 |
Synaptic integration in tuft dendrites of layer 5 pyramidal neurons (Larkum et al. 2009) |
319 |
Synchronization by D4 dopamine receptor-mediated phospholipid methylation (Kuznetsova, Deth 2008) |
320 |
Systematic integration of data into multi-scale models of mouse primary V1 (Billeh et al 2020) |