• español
    • English
    • español
    • English
  • Mi e-UCJC
Ver ítem 
  •   e-UCJC Principal
  • Investigación
  • Ver ítem
  •   e-UCJC Principal
  • Investigación
  • Ver ítem
JavaScript is disabled for your browser. Some features of this site may not work without it.

Selective effects of dopamine depletion on neuronal subpopulations in the sensorimotor striatum during procedural learning

Identificadores
URI: http://hdl.handle.net/20.500.12020/1228
ISSN: https://www.jneurosci.org/content/33/11/4782
DOI: https://doi.org/10.1523/JNEUROSCI.3746-12.2013
Autor/es
F. Hernandez, Ledia; Kubota, Yasuo; Hu, Dan; Howe, Mark W; Lemaire, Nune; [et al.]
Fecha
2013-03-13
Tipo de documento
article
Área/s de conocimiento
Biología Celular y Molecular
Ciencias Biomédicas
Materia/s Unesco
24 Ciencias de la Vida
2490 Neurociencias
Fichero/s
Thumbnail
Selective Effects of Dopamine Depletion and L-DOPA Therapy on Learning-Related Firing Dynamics of Striatal Neurons (4.793Mb)
Exportar
RIS
Social
Resumen
Despite evidence that dopamine neurotransmission in the striatum is critical for learning as well as for movement control, little is yet known about how the learning-related dynamics of striatal activity are affected by dopamine depletion, a condition faced in Parkinson's disease. We made localized intrastriatal 6-hydroxydopamine lesions in rats and recorded within the dopamine-depleted sensorimotor striatal zone and its contralateral correspondent as the animals learned a conditional maze task. Rather than producing global, nonspecific elevations in firing rate across the task, the dopamine depletion altered striatal projection neuron activity and fast-spiking interneuron activity selectively, with sharply task-specific and cell type-specific effects, and often, with learning-stage selective effects as well. Striatal projection neurons with strong responses during the maze runs had especially elevated responsiveness during the maze runs. Projection neurons that, instead, fired most strongly before maze running showed elevated pre-start firing rates, but not during maze running, as learning progressed. The intrastriatal dopamine depletion severely affected the learning-related patterning of fast-spiking interneuron ensembles, especially during maze running and after extended training. Remarkably, L-DOPA treatment almost entirely reversed the depletion-induced elevations in pre-run firing of the projection neurons, and elevated their responses around start and end of maze runs. By contrast, L-DOPA failed to normalize fast-spiking interneuron activity. Thus the effects of striatal dopamine depletion and restoration on striatal activity are highly dependent not only on cell type, as previously shown, but also on the behavioral activity called for and the state of behavioral learning achieved.
Colecciones
  • Investigación
Mostrar el registro completo del ítem

Listar

ColeccionesAutoresTítulosPalabras claveÁreas de conocimientoPerfiles de autorMaterias UnescoEsta colecciónAutoresTítulosPalabras claveMaterias UnescoÁreas de conocimiento

Mi cuenta

AccederRegistro

Estadísticas

Ver Estadísticas de uso

De interés

Acerca del repositorioCómo depositarLegislación española sobre acceso abiertoGlosarioMovimiento Open AccessPolítica de Acceso Abierto UCJC

Enlaces

SHERPA/RoMEODulcineaHéloïseLicencia Creative Commons

La Universidad Camilo José Cela nace en Madrid en 2000. Forma parte de la Institución Educativa SEK, con más de un siglo de experiencia en educación. Desde nuestra fundación hemos creado un proyecto de calidad cuyo objetivo es formar universitarios globales preparados para la realidad laboral del siglo XXI.

LA UNIVERSIDAD

  • Conoce la universidad
  • International Advisory Board
  • Institución Educativa SEK
  • Fundación Felipe Segovia
  • Campus Villafranca
  • Campus Almagro
  • Deporte
  • Estructura Académica
  • Nuestros profesores
  • Empleo
  • Publicaciones
  • Calidad
  • Normativa
  • Contacto

FACULTADES

  • Escuela de Arquitectura y Tecnología
  • Facultad de Educación
  • Facultad de Salud
  • Facultad de Derecho y Economía
  • Facultad de Comunicación
  • Centros Adscritos

ESTUDIOS

  • Grados Oficiales
  • Adaptación al Grado
  • Dobles Titulaciones
  • Másteres Oficiales
  • Másteres Propios
  • Cursos de experto
  • Cursos de especialista
  • Secretaria de Alumnos

FORMACIÓN CORPORATIVA

PRENSA

  • Contacto

TRABAJA CON NOSOTROS

BUZÓN DE SUGERENCIAS

Universidad Camilo José Cela © 2017 · C/ Castillo de Alarcón, 49 · Urb. Villafranca del Castillo · 28692 Madrid · T. 91 815 31 31 · info@ucjc.edu

  • Contacto
  • Sugerencias