Models that contain the Neuron : Cerebellum purkinje cell

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1. A detailed Purkinje cell model (Masoli et al 2015)
2. A kinetic model unifying presynaptic short-term facilitation and depression (Lee et al. 2009)
3. A model of cerebellar LTD including RKIP inactivation of Raf and MEK (Hepburn et al 2017)
4. A simplified cerebellar Purkinje neuron (the PPR model) (Brown et al. 2011)
5. Adaptive robotic control driven by a versatile spiking cerebellar network (Casellato et al. 2014)
6. Alcohol action in a detailed Purkinje neuron model and an efficient simplified model (Forrest 2015)
7. Axonal gap junctions produce fast oscillations in cerebellar Purkinje cells (Traub et al. 2008)
8. Calcium dynamics depend on dendritic diameters (Anwar et al. 2014)
9. Cerebellar gain and timing control model (Yamazaki & Tanaka 2007)(Yamazaki & Nagao 2012)
10. Cerebellar long-term depression (LTD) (Antunes and De Schutter 2012)
11. Cerebellar memory consolidation model (Yamazaki et al. 2015)
12. Cerebellar purkinje cell (De Schutter and Bower 1994)
13. Cerebellar purkinje cell: interacting Kv3 and Na currents influence firing (Akemann, Knopfel 2006)
14. Cerebellar purkinje cell: K and Ca channels regulate APs (Miyasho et al 2001)
15. Cerebellar Purkinje Cell: resurgent Na current and high frequency firing (Khaliq et al 2003)
16. Concentration dependent nonlinear K+ and Cl- leak current (Huang et al. 2015)
17. Controlling KCa channels with different Ca2+ buffering models in Purkinje cell (Anwar et al. 2012)
18. Dendritic signals command firing dynamics in a Cerebellar Purkinje Cell model (Genet et al. 2010)
19. Dendritica (Vetter et al 2001)
20. Effect of voltage sensitive fluorescent proteins on neuronal excitability (Akemann et al. 2009)
21. Parallel STEPS: Large scale stochastic spatial reaction-diffusion simulat. (Chen & De Schutter 2017)
22. Phase response curves firing rate dependency of rat purkinje neurons in vitro (Couto et al 2015)
23. Spike timing detection in different forms of LTD (Doi et al 2005)
24. Stability of complex spike timing-dependent plasticity in cerebellar learning (Roberts 2007)
25. Stochastic calcium mechanisms cause dendritic calcium spike variability (Anwar et al. 2013)
26. Stochastic ion channels and neuronal morphology (Cannon et al. 2010)
27. Using Strahler`s analysis to reduce realistic models (Marasco et al, 2013)
28. Vestibulo-Ocular Reflex model in Matlab (Clopath at al. 2014)

Re-display model names with descriptions