Citation Relationships



Geminiani A, Casellato C, Antonietti A, D'Angelo E, Pedrocchi A (2018) A Multiple-Plasticity Spiking Neural Network Embedded in a Closed-Loop Control System to Model Cerebellar Pathologies. Int J Neural Syst 28:1750017 [PubMed]

References and models cited by this paper

References and models that cite this paper

Adeli H,Ghosh-Dastidar S (2010) Automated EEGbased Diagnosis of Neurological Disorders: Inventing the Future of Neurology

Bracha V, Zhao L, Irwin KB, Bloedel JR (2000) The human cerebellum and associative learning: dissociation between the acquisition, retention and extinction of conditioned eyeblinks. Brain Res 860:87-94 [PubMed]

Caligiore D, Pezzulo G, Miall RC, Baldassarre G (2013) The contribution of brain sub-cortical loops in the expression and acquisition of action understanding abilities. Neurosci Biobehav Rev 37:2504-15 [Journal] [PubMed]

Carlson KD, Nageswaran JM, Dutt N, Krichmar JL (2014) An efficient automated parameter tuning framework for spiking neural networks. Front Neurosci 8:10 [Journal] [PubMed]

Carrillo RR, Ros E, Boucheny C, Coenen OJ (2008) A real-time spiking cerebellum model for learning robot control. Biosystems 94:18-27 [Journal] [PubMed]

Casellato C, Antonietti A, Garrido JA, Carrillo RR, Luque NR, Ros E, Pedrocchi A, D'Angelo E (2014) Adaptive robotic control driven by a versatile spiking cerebellar network. PLoS One 9:e112265 [Journal] [PubMed]

   Adaptive robotic control driven by a versatile spiking cerebellar network (Casellato et al. 2014) [Model]

Crabtree GW, Gogos JA (2014) Synaptic plasticity, neural circuits, and the emerging role of altered short-term information processing in schizophrenia. Front Synaptic Neurosci 6:28 [Journal] [PubMed]

D'Angelo E (2014) The organization of plasticity in the cerebellar cortex: from synapses to control. Prog Brain Res 210:31-58 [Journal] [PubMed]

D'Angelo E, Casali S (2012) Seeking a unified framework for cerebellar function and dysfunction: from circuit operations to cognition. Front Neural Circuits 6:116 [Journal] [PubMed]

D'Angelo E, De Filippi G, Rossi P, Taglietti V (1995) Synaptic excitation of individual rat cerebellar granule cells in situ: evidence for the role of NMDA receptors. J Physiol 484 ( Pt 2):397-413 [PubMed]

D'Angelo E, Mapelli L, Casellato C, Garrido JA, Luque N, Monaco J, Prestori F, Pedrocchi A, Ros E (2016) Distributed Circuit Plasticity: New Clues for the Cerebellar Mechanisms of Learning. Cerebellum 15:139-51 [Journal] [PubMed]

D'Angelo E, Solinas S, Garrido J, Casellato C, Pedrocchi A, Mapelli J, Gandolfi D, Prestori F (2013) Realistic modeling of neurons and networks: towards brain simulation. Funct Neurol 28:153-66 [Journal] [PubMed]

Flecknell P (2002) Replacement, reduction and refinement. ALTEX 19:73-8 [PubMed]

Galliano E, Gao Z, Schonewille M, Todorov B, Simons E, Pop AS, D'Angelo E, van den Maagdenberg AM, Hoebeek FE, De Zeeuw CI (2013) Silencing the majority of cerebellar granule cells uncovers their essential role in motor learning and consolidation. Cell Rep 3:1239-51 [Journal] [PubMed]

Gao Z, van Beugen BJ, De Zeeuw CI (2012) Distributed synergistic plasticity and cerebellar learning. Nat Rev Neurosci 13:619-35 [Journal] [PubMed]

Gerwig M, Hajjar K, Dimitrova A, Maschke M, Kolb FP, Frings M, Thilmann AF, Forsting M, Diener HC, Timmann D (2005) Timing of conditioned eyeblink responses is impaired in cerebellar patients. J Neurosci 25:3919-31 [Journal] [PubMed]

Ghosh-Dastidar S, Adeli H (2009) Spiking neural networks. Int J Neural Syst 19:295-308 [Journal] [PubMed]

Ghosh-Dastidar S, Adeli H (2009) A new supervised learning algorithm for multiple spiking neural networks with application in epilepsy and seizure detection. Neural Netw 22:1419-31 [Journal] [PubMed]

Herreros I, Verschure PF (2013) Nucleo-olivary inhibition balances the interaction between the reactive and adaptive layers in motor control. Neural Netw 47:64-71 [Journal] [PubMed]

Hidaka Y, Han CE, Wolf SL, Winstein CJ, Schweighofer N (2012) Use it and improve it or lose it: interactions between arm function and use in humans post-stroke. PLoS Comput Biol 8:e1002343 [Journal] [PubMed]

Ito M (2006) Cerebellar circuitry as a neuronal machine. Prog Neurobiol 78:272-303 [Journal] [PubMed]

Ito M (2013) Error detection and representation in the olivo-cerebellar system. Front Neural Circuits 7:1 [Journal] [PubMed]

Ito M, Yamaguchi K, Nagao S, Yamazaki T (2014) Long-term depression as a model of cerebellar plasticity. Prog Brain Res 210:1-30 [Journal] [PubMed]

Jirenhed DA, Bengtsson F, Hesslow G (2007) Acquisition, extinction, and reacquisition of a cerebellar cortical memory trace. J Neurosci 27:2493-502 [Journal] [PubMed]

Kishimoto Y, Hirono M, Atarashi R, Sakaguchi S, Yoshioka T, Katamine S, Kirino Y (2013) Age-dependent impairment of eyeblink conditioning in prion protein-deficient mice. PLoS One 8:e60627 [Journal] [PubMed]

Knoblauch A, Hauser F, Gewaltig MO, Körner E, Palm G (2012) Does spike-timing-dependent synaptic plasticity couple or decouple neurons firing in synchrony? Front Comput Neurosci 6:55 [Journal] [PubMed]

Koekkoek SK, Yamaguchi K, Milojkovic BA, Dortland BR, Ruigrok TJ, Maex R, De Graaf W, Smit AE, VanderWerf F, Bakker CE, Willemsen R, Ikeda T, Kakizawa S, Onodera K, Nelson DL, Mientjes E, Joosten M, De Schutter E, Oostra BA, Ito M, De Zeeuw CI (2005) Deletion of FMR1 in Purkinje cells enhances parallel fiber LTD, enlarges spines, and attenuates cerebellar eyelid conditioning in Fragile X syndrome. Neuron 47:339-52 [Journal] [PubMed]

Kriener B, Enger H, Tetzlaff T, Plesser HE, Gewaltig MO, Einevoll GT (2014) Dynamics of self-sustained asynchronous-irregular activity in random networks of spiking neurons with strong synapses. Front Comput Neurosci 8:136 [Journal] [PubMed]

Kronenbuerger M, Gerwig M, Brol B, Block F, Timmann D (2007) Eyeblink conditioning is impaired in subjects with essential tremor. Brain 130:1538-51 [Journal] [PubMed]

Luque NR, Garrido JA, Carrillo RR, D'Angelo E, Ros E (2014) Fast convergence of learning requires plasticity between inferior olive and deep cerebellar nuclei in a manipulation task: a closed-loop robotic simulation. Front Comput Neurosci 8:97 [Journal] [PubMed]

   Fast convergence of cerebellar learning (Luque et al. 2015) [Model]

Manto MU (2005) The wide spectrum of spinocerebellar ataxias (SCAs). Cerebellum 4:2-6 [Journal] [PubMed]

Markram H (2013) Seven challenges for neuroscience. Funct Neurol 28:145-51 [Journal] [PubMed]

Marmolino D, Manto M (2010) Past, present and future therapeutics for cerebellar ataxias. Curr Neuropharmacol 8:41-61 [Journal] [PubMed]

Medina JF, Garcia KS, Nores WL, Taylor NM, Mauk MD (2000) Timing mechanisms in the cerebellum: testing predictions of a large-scale computer simulation. J Neurosci 20:5516-25 [PubMed]

Medina JF, Nores WL, Ohyama T, Mauk MD (2000) Mechanisms of cerebellar learning suggested by eyelid conditioning. Curr Opin Neurobiol 10:717-24 [PubMed]

Reeber SL, Otis TS, Sillitoe RV (2013) New roles for the cerebellum in health and disease. Front Syst Neurosci 7:83 [Journal] [PubMed]

Ros E, Carrillo R, Ortigosa EM, Barbour B, Agís R (2006) Event-driven simulation scheme for spiking neural networks using lookup tables to characterize neuronal dynamics. Neural Comput 18:2959-93 [Journal] [PubMed]

Schonewille M, Gao Z, Boele HJ, Veloz MF, Amerika WE, Simek AA, De Jeu MT, Steinberg JP, Takamiya K, Hoebeek FE, Linden DJ, Huganir RL, De Zeeuw CI (2011) Reevaluating the role of LTD in cerebellar motor learning. Neuron 70:43-50 [Journal] [PubMed]

Schweighofer N, Choi Y, Winstein C, Gordon J (2012) Task-oriented rehabilitation robotics. Am J Phys Med Rehabil 91:S270-9 [Journal] [PubMed]

Schweighofer N, Lang EJ, Kawato M (2013) Role of the olivo-cerebellar complex in motor learning and control. Front Neural Circuits 7:94 [Journal] [PubMed]

Shadmehr R, Smith MA, Krakauer JW (2010) Error correction, sensory prediction, and adaptation in motor control. Annu Rev Neurosci 33:89-108 [Journal] [PubMed]

Shibuki K, Gomi H, Chen L, Bao S, Kim JJ, Wakatsuki H, Fujisaki T, Fujimoto K, Katoh A, Ikeda T, Chen C, Thompson RF, Itohara S (1996) Deficient cerebellar long-term depression, impaired eyeblink conditioning, and normal motor coordination in GFAP mutant mice. Neuron 16:587-99 [PubMed]

Smith MA, Ghazizadeh A, Shadmehr R (2006) Interacting adaptive processes with different timescales underlie short-term motor learning. PLoS Biol 4:e179 [Journal] [PubMed]

Steinmetz JE, Sengelaub DR (1992) Possible conditioned stimulus pathway for classical eyelid conditioning in rabbits. I. Anatomical evidence for direct projections from the pontine nuclei to the cerebellar interpositus nucleus. Behav Neural Biol 57:103-15 [PubMed]

Timmann D, Gerwig M, Frings M, Maschke M, Kolb FP (2005) Eyeblink conditioning in patients with hereditary ataxia: a one-year follow-up study. Exp Brain Res 162:332-45 [Journal] [PubMed]

Wang Z, Guo L, Adjouadi M (2014) A generalized Leaky Integrate-and-Fire neuron model with fast implementation method. Int J Neural Syst 24:1440004 [Journal] [PubMed]

Yamazaki T, Tanaka S (2007) The cerebellum as a liquid state machine. Neural Netw 20:290-7 [Journal] [PubMed]

Yuzaki M (2013) Cerebellar LTD vs. motor learning-lessons learned from studying GluD2. Neural Netw 47:36-41 [Journal] [PubMed]

(48 refs)