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Thiago Matos Pinto
Thiago Matos Pinto
PhD Researcher in Computational Neuroscience, University of Hertfordshire
Verified email at ime.uerj.br
Title
Cited by
Cited by
Year
Modeling the electric potential across neuronal membranes: the effect of fixed charges on spinal ganglion neurons and neuroblastoma cells
TM Pinto, RS Wedemann, CM Cortez
PLoS One 9 (5), e96194, 2014
202014
The effective calcium/calmodulin concentration determines the sensitivity of CaMKII to the frequency of calcium oscillations
TM Pinto, MJ Schilstra, V Steuber
Information Processign in Cells and Tissues: 9th International Conference …, 2012
62012
Binding of Filamentous Actin to CaMKII as Potential Regulation Mechanism of Bidirectional Synaptic Plasticity by β CaMKII in Cerebellar Purkinje Cells
TM Pinto, MJ Schilstra, AC Roque, V Steuber
Scientific Reports 10 (1), 9019, 2020
52020
Does CaMKII decode Ca2+oscillations?
TM Pinto, MJ Schilstra, V Steuber
BMC Neuroscience 13 (Suppl 1), O15, 2012
32012
Computational modeling of the electric potential in biological membrane. A comparison between healthy and cancerous neurons
TM Pinto, RS Wedemann, CM Cortez
BMC Neuroscience 12 (Suppl 1), P47, 2011
32011
A comparison of the electric potential through the membranes of ganglion neurons and neuroblastoma cells
TM Pinto, RS Wedemann, C Cortez
Artificial Neural Networks and Machine Learning–ICANN 2011: 21st …, 2011
32011
Filamentous actin binding enables βCaMKII to regulate bidirectional plasticity in cerebellar Purkinje cells
TM Pinto, MJ Schilstra, V Steuber
BMC Neuroscience 14 (Suppl 1), P375, 2013
22013
βCaMKII regulates bidirectional long-term plasticity in cerebellar Purkinje cells by a CaMKII/PP2B switch mechanism
TM Pinto, MJ Schilstra, V Steuber, AC Roque
BMC Neuroscience 15, 1-2, 2014
12014
Modelagem do potencial elétrico através da membrana do neurônio ganglionar e células de neuroblastoma. Efeitos das cargas superficiais
TM Pinto
Universidade do Estado do Rio de Janeiro, 2010
12010
Binding of Filamentous Actin to CaMKII as a Potential Mechanism for the Regulation of Bidirectional Synaptic Plasticity by βCaMKII in Cerebellar Purkinje Cells
TM Pinto, MJ Schilstra, AC Roque, V Steuber
bioRxiv, 517110, 2019
2019
Unravelling how βCaMKII controls the direction of plasticity at parallel fibre-Purkinje cell synapses
TM Pinto, MJ Schilstra, V Steuber, AC Roque
AIP Conference Proceedings 1702 (1), 2015
2015
Preface of the “Symposium on International Symposium on Computational Modeling in Neurobiology”
CM Cortez, TM Pinto
AIP Conference Proceedings 1702 (1), 2015
2015
The role of βCaMKII in regulating bidirectional plasticity in cerebellar purkinje cells
T Pinto, M Schilstra, V Steuber, AC Roque
Abstracts, 2015
2015
Computational Models of Intracellular Signalling and Synaptic Plasticity Induction in the Cerebellum
TM Pinto
University of Hertfordshire, 2013
2013
The behavior of the electric potential across neuronal membranes of spinal ganglion and neuroblastoma cells
TM Pinto, RS Wedemann, CM Cortez
BMC Neuroscience 14 (Suppl 1), P72, 2013
2013
Modelling the role of βCaMKII in regulating bidirectional plasticity at parallel fibre–Purkinje cell synapses
TM Pinto, MJ Schilstra, V Steuber
Bernstein Conference 2012, Munich, Germany, 12 Sep - 14 Sep, 2012., 2012
2012
Does CaMKII decode Ca 2 oscillations?
TM Pinto, MJ Schilstra, V Steuber
2012
MBA Executivo em Gestão de Negócios
TM PINTO
2011
THE POTENTIAL PROFILE ACROSS THE NEURON MEMBRANE FOR RESTING AND ACTION STATES
TM Pinto, D Silva¹, CM Cortez¹, RS Wedemann
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Articles 1–19