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Carmina Montoliu

Showing results (11-20 of 110) with videos related to

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The European Journal of Neuroscience|February 8, 2007
Prenatal exposure to polybrominated diphenylether 99 enhances the function of the glutamate-nitric oxide-cGMP pathway in brain in vivo and in cultured neuronsMarta Llansola, Slaven Erceg, Pilar Monfort, et al.
Journal of Neurochemistry|October 16, 2004
Modulation of NMDA receptor function by cyclic AMP in cerebellar neurones in cultureMarta Llansola, Ana M Sánchez-Pérez, Carmina Montoliu, et al.
Neurotoxicity Research|June 16, 2009
Polychlorinated biphenyls PCB 153 and PCB 126 impair the glutamate-nitric oxide-cGMP pathway in cerebellar neurons in culture by different mechanismsMarta Llansola, Blanca Piedrafita, Regina Rodrigo, et al.
Journal of Clinical Medicine|January 17, 2020
The Erythrocytic Hypothesis of Brain Energy Crisis in Sporadic Alzheimer Disease: Possible Consequences and Supporting EvidenceElena Kosenko, Lyudmila Tikhonova, Gubidat Alilova, et al.
Brain Research|July 30, 2003
Sources of oxygen radicals in brain in acute ammonia intoxication in vivoElena Kosenko, Natalia Venediktova, Yury Kaminsky, et al.
Neurochemistry International|May 22, 2002
Chronic hyperammonemia alters protein phosphorylation and glutamate receptor-associated signal transduction in brainRegina Corbalán, Mariluz Hernández-Viadel, Marta Llansola, et al.
Journal of Neuroscience Research|March 28, 2009
Increasing the function of the glutamate-nitric oxide-cyclic guanosine monophosphate pathway increases the ability to learn a Y-maze taskMarta Llansola, Mariluz Hernandez-Viadel, Slaven Erceg, et al.
Biological Research|April 26, 2024
Increased levels and activation of the IL-17 receptor in microglia contribute to enhanced neuroinflammation in cerebellum of hyperammonemic ratsYaiza M Arenas, Adrià López-Gramaje, Carmina Montoliu, et al.
Brain, Behavior, and Immunity|October 9, 2024
Extracellular vesicles from L. paracasei improve neuroinflammation, GABA neurotransmission and motor incoordination in hyperammonemic ratsYaiza M Arenas, Gaspar Pérez-Martinez, Carmina Montoliu, et al.
Cells|March 4, 2020
Extracellular Vesicles from Hyperammonemic Rats Induce Neuroinflammation and Motor Incoordination in Control RatsPaula Izquierdo-Altarejos, Andrea Cabrera-Pastor, Hernan Gonzalez-King, et al.
Pageof 11

Showing results (11-20 of 110) with videos related to

Sort By:
Pageof 11
The European Journal of Neuroscience|February 8, 2007
Prenatal exposure to polybrominated diphenylether 99 enhances the function of the glutamate-nitric oxide-cGMP pathway in brain in vivo and in cultured neuronsMarta Llansola, Slaven Erceg, Pilar Monfort, et al.
Journal of Neurochemistry|October 16, 2004
Modulation of NMDA receptor function by cyclic AMP in cerebellar neurones in cultureMarta Llansola, Ana M Sánchez-Pérez, Carmina Montoliu, et al.
Neurotoxicity Research|June 16, 2009
Polychlorinated biphenyls PCB 153 and PCB 126 impair the glutamate-nitric oxide-cGMP pathway in cerebellar neurons in culture by different mechanismsMarta Llansola, Blanca Piedrafita, Regina Rodrigo, et al.
Journal of Clinical Medicine|January 17, 2020
The Erythrocytic Hypothesis of Brain Energy Crisis in Sporadic Alzheimer Disease: Possible Consequences and Supporting EvidenceElena Kosenko, Lyudmila Tikhonova, Gubidat Alilova, et al.
Brain Research|July 30, 2003
Sources of oxygen radicals in brain in acute ammonia intoxication in vivoElena Kosenko, Natalia Venediktova, Yury Kaminsky, et al.
Neurochemistry International|May 22, 2002
Chronic hyperammonemia alters protein phosphorylation and glutamate receptor-associated signal transduction in brainRegina Corbalán, Mariluz Hernández-Viadel, Marta Llansola, et al.
Journal of Neuroscience Research|March 28, 2009
Increasing the function of the glutamate-nitric oxide-cyclic guanosine monophosphate pathway increases the ability to learn a Y-maze taskMarta Llansola, Mariluz Hernandez-Viadel, Slaven Erceg, et al.
Biological Research|April 26, 2024
Increased levels and activation of the IL-17 receptor in microglia contribute to enhanced neuroinflammation in cerebellum of hyperammonemic ratsYaiza M Arenas, Adrià López-Gramaje, Carmina Montoliu, et al.
Brain, Behavior, and Immunity|October 9, 2024
Extracellular vesicles from L. paracasei improve neuroinflammation, GABA neurotransmission and motor incoordination in hyperammonemic ratsYaiza M Arenas, Gaspar Pérez-Martinez, Carmina Montoliu, et al.
Cells|March 4, 2020
Extracellular Vesicles from Hyperammonemic Rats Induce Neuroinflammation and Motor Incoordination in Control RatsPaula Izquierdo-Altarejos, Andrea Cabrera-Pastor, Hernan Gonzalez-King, et al.
Pageof 11