Wenner P.
18
Coauthors
6
Documentos
Volumen de publicaciones por año
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Año de publicación | Num. Publicaciones |
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2010 | 1 |
2012 | 1 |
2013 | 1 |
2016 | 2 |
2020 | 1 |
Publicaciones por áreas de conocimiento
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Área de conocimiento | Num. Publicaciones |
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Fisiología | 1 |
Neuropsicología | 1 |
Publicaciones por áreas temáticas
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Área temática | Num. Publicaciones |
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Sistemas fisiológicos específicos de los animales | 4 |
Fisiología humana | 4 |
Enfermedades | 3 |
Fisiología y materias afines | 1 |
Principales fuentes de datos
Origen | Num. Publicaciones |
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Scopus | 6 |
Google Scholar | 6 |
RRAAE | 0 |
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Coautores destacados por número de publicaciones
Coautor | Num. Publicaciones |
---|---|
Miguel Angel Garcia‑Bereguiain | 6 |
González-Islas C. | 6 |
Lindsly C. | 2 |
Chub N. | 1 |
Hill A. | 1 |
Butler E. | 1 |
O'Flaherty B. | 1 |
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Publicaciones del autor
Homeostatic recovery of embryonic spinal activity initiated by compensatory changes in resting membrane potential
ArticleAbstract: When baseline activity in a neuronal network is modified by external challenges, a set of mechanismsPalabras claves:Homeostatic, Intrinsic plasticity, Na K ATPase, Resting membrane potential, Synpatic scaling, Threshold voltageAutores:González-Islas C., Miguel Angel Garcia‑Bereguiain, Wenner P.Fuentes:googlescopusTonic and transient endocannabinoid regulation of AMP aergic miniature postsynaptic currents and homeostatic plasticity in embryonic motor networks
ArticleAbstract: Endocannabinoid signaling has been shown to mediate synaptic plasticity by retrogradely inhibiting pPalabras claves:Autores:González-Islas C., Miguel Angel Garcia‑Bereguiain, Wenner P.Fuentes:googlescopusGABAergic synaptic scaling in embryonic motoneurons is mediated by a shift in the chloride reversal potential
ArticleAbstract: Homeostatic synaptic plasticity ensures that networks maintain specific levels of activity by regulaPalabras claves:Autores:Chub N., González-Islas C., Miguel Angel Garcia‑Bereguiain, Wenner P.Fuentes:googlescopusSpontaneous release regulates synaptic scaling in the embryonic spinal network In Vivo
ArticleAbstract: Homeostatic plasticity mechanisms maintain cellular or network spiking activity within a physiologicPalabras claves:Chick embryo, Homeostatic plasticity, Nicotine, Spinal cord, Spontaneous release, Synaptic scalingAutores:González-Islas C., Lindsly C., Miguel Angel Garcia‑Bereguiain, Wenner P.Fuentes:googlescopusTonic nicotinic transmission enhances spinal GABAergic presynaptic release and the frequency of spontaneous network activity
ArticleAbstract: Synaptically driven spontaneous network activity (SNA) is observed in virtually all developing netwoPalabras claves:Chick embryo, GABA receptor A, Nicotinic receptor, Spinal cord, Spontaneous network activityAutores:González-Islas C., Miguel Angel Garcia‑Bereguiain, O'Flaherty B., Wenner P.Fuentes:googlescopus