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Ito M (2001) Cerebellar long-term depression: characterization, signal transduction, and functional roles. Physiol Rev 81:1143-95 [PubMed]

References and models cited by this paper

References and models that cite this paper

Chono K, Takagi H, Koyama S, Suzuki H, Ito E (2003) A cell model study of calcium influx mechanism regulated by calcium-dependent potassium channels in Purkinje cell dendrites. J Neurosci Methods 129:115-27 [PubMed]
Doi T, Kuroda S, Michikawa T, Kawato M (2005) Inositol 1,4,5-trisphosphate-dependent Ca2+ threshold dynamics detect spike timing in cerebellar Purkinje cells. J Neurosci 25:950-61 [Journal] [PubMed]
   Spike timing detection in different forms of LTD (Doi et al 2005) [Model]
Garrido JA, Luque NR, D'Angelo E, Ros E (2013) Distributed cerebellar plasticity implements adaptable gain control in a manipulation task: a closed-loop robotic simulation Front. Neural Circuits 7:159:1-20 [Journal] [PubMed]
   Distributed cerebellar plasticity implements adaptable gain control (Garrido et al., 2013) [Model]
Hepburn I, Jain A, Gangal H, Yamamoto Y, Tanaka-Yamamoto K, De Schutter E (2017) A model of induction of cerebellar Long-Term Depression including RKIP inactivation of Raf and MEK Frontiers in Molecular Neuroscience [Journal]
   A model of cerebellar LTD including RKIP inactivation of Raf and MEK (Hepburn et al 2017) [Model]
Manninen T, Hituri K, Kotaleski JH, Blackwell KT, Linne ML (2010) Postsynaptic signal transduction models for long-term potentiation and depression. Front Comput Neurosci 4:152 [Journal] [PubMed]
Zamora Chimal CG, De Schutter E (2018) Ca2+ Requirements for Long-Term Depression Are Frequency Sensitive in Purkinje Cells. Front Mol Neurosci 11:438 [Journal] [PubMed]
   Ca2+ requirements for Long-Term Depression in Purkinje Cells (Criseida Zamora et al 2018) [Model]
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