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Vicente Felipo

Showing results (11-20 of 227) with videos related to

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Extracellular Vesicles and Circulating Nucleic Acids|December 19, 2024
Contribution of extracellular vesicles to neuroinflammation and cognitive and motor deficits in hyperammonemia and hepatic encephalopathyPaula Izquierdo-Altarejos, Vicente Felipo
Progress in Neurobiology|September 5, 2002
Neurobiology of ammoniaVicente Felipo, Roger F Butterworth
Neurochemistry International|June 7, 2005
Serines 890 and 896 of the NMDA receptor subunit NR1 are differentially phosphorylated by protein kinase C isoformsAna M Sánchez-Pérez, Vicente Felipo
Neurobiology of Disease|April 20, 2005
Neurons exposed to ammonia reproduce the differential alteration in nitric oxide modulation of guanylate cyclase in the cerebellum and cortex of patients with liver cirrhosisRegina Rodrigo, Slaven Erceg, Vicente Felipo
Neurochemistry International|May 20, 2009
Transport of AMPA receptors during long-term potentiation is impaired in rats with hepatic encephalopathyPilar Monfort, Blanca Piedrafita, Vicente Felipo
Metabolic Brain Disease|December 31, 2005
Molecular mechanisms of the alterations in NMDA receptor-dependent long-term potentiation in hyperammonemiaPilar Monfort, María-Dolores Muñoz, Vicente Felipo
ACS Chemical Neuroscience|September 28, 2016
Extracellular Protein Kinase A Modulates Intracellular Calcium/Calmodulin-Dependent Protein Kinase II, Nitric Oxide Synthase, and the Glutamate-Nitric Oxide-cGMP Pathway in Cerebellum. Differential Effects in HyperammonemiaAndrea Cabrera-Pastor, Marta Llansola, Vicente Felipo
Journal of Neurochemistry|August 12, 2005
Chronic hyperammonemia in vivo impairs long-term potentiation in hippocampus by altering activation of cyclic GMP-dependent-protein kinase and of phosphodiesterase 5Pilar Monfort, María-Dolores Muñoz, Vicente Felipo
Neurobiology of Disease|January 31, 2004
Hyperammonemia impairs long-term potentiation in hippocampus by altering the modulation of cGMP-degrading phosphodiesterase by protein kinase GPilar Monfort, María-Dolores Muñoz, Vicente Felipo
The European Journal of Neuroscience|April 19, 2007
Motor activity is modulated via different neuronal circuits in rats with chronic liver failure than in normal ratsOmar Cauli, Nisrin Mlili, Marta Llansola, et al.
Pageof 23

Showing results (11-20 of 227) with videos related to

Sort By:
Pageof 23
Extracellular Vesicles and Circulating Nucleic Acids|December 19, 2024
Contribution of extracellular vesicles to neuroinflammation and cognitive and motor deficits in hyperammonemia and hepatic encephalopathyPaula Izquierdo-Altarejos, Vicente Felipo
Progress in Neurobiology|September 5, 2002
Neurobiology of ammoniaVicente Felipo, Roger F Butterworth
Neurochemistry International|June 7, 2005
Serines 890 and 896 of the NMDA receptor subunit NR1 are differentially phosphorylated by protein kinase C isoformsAna M Sánchez-Pérez, Vicente Felipo
Neurobiology of Disease|April 20, 2005
Neurons exposed to ammonia reproduce the differential alteration in nitric oxide modulation of guanylate cyclase in the cerebellum and cortex of patients with liver cirrhosisRegina Rodrigo, Slaven Erceg, Vicente Felipo
Neurochemistry International|May 20, 2009
Transport of AMPA receptors during long-term potentiation is impaired in rats with hepatic encephalopathyPilar Monfort, Blanca Piedrafita, Vicente Felipo
Metabolic Brain Disease|December 31, 2005
Molecular mechanisms of the alterations in NMDA receptor-dependent long-term potentiation in hyperammonemiaPilar Monfort, María-Dolores Muñoz, Vicente Felipo
ACS Chemical Neuroscience|September 28, 2016
Extracellular Protein Kinase A Modulates Intracellular Calcium/Calmodulin-Dependent Protein Kinase II, Nitric Oxide Synthase, and the Glutamate-Nitric Oxide-cGMP Pathway in Cerebellum. Differential Effects in HyperammonemiaAndrea Cabrera-Pastor, Marta Llansola, Vicente Felipo
Journal of Neurochemistry|August 12, 2005
Chronic hyperammonemia in vivo impairs long-term potentiation in hippocampus by altering activation of cyclic GMP-dependent-protein kinase and of phosphodiesterase 5Pilar Monfort, María-Dolores Muñoz, Vicente Felipo
Neurobiology of Disease|January 31, 2004
Hyperammonemia impairs long-term potentiation in hippocampus by altering the modulation of cGMP-degrading phosphodiesterase by protein kinase GPilar Monfort, María-Dolores Muñoz, Vicente Felipo
The European Journal of Neuroscience|April 19, 2007
Motor activity is modulated via different neuronal circuits in rats with chronic liver failure than in normal ratsOmar Cauli, Nisrin Mlili, Marta Llansola, et al.
Pageof 23