Logotipo del repositorio
  • Comunidades
  • Explorar Repositorio
    • Autores
    • Título
    • Materias
    • Fecha de publicación
  • Guías de ayuda
    • Sobre el repositorio
    • Guía de autoarchivo
    • Preguntas frecuentes
    • English
    • Español
    • Iniciar sesión
      ¿Nuevo Usuario? Pulse aquí para registrarse¿Has olvidado tu contraseña?
    1. Inicio
    2. Buscar por autor

    Examinando por Autor "Godoy, Jaime"

    Mostrando 1 - 1 de 1
    Resultados por página
    Opciones de ordenación
    • Cargando...
      Miniatura
      Ítem
      Global neural oscillations underlie performance variability and attentional state fluctuations in humans
      (Springer Nature, 2026-04-24) Herrero, Joaquín; Henríquez-Ch, Rodrigo; Figueroa-Vargas, Alejandra; Uribe-San Martin, Reinaldo; Cantillano, Christian; Fuentealba, Pablo; Mellado, Patricio; Godoy, Jaime; Billeke, Pablo; Aboitiz, Francisco
      Fluctuations in attentional states, such as mind-wandering (MW), are associated with critical variability in task performance. While fMRI studies highlight the opposing roles of task-positive (e.g., dorsal attention network) and task-negative (e.g., default mode network) systems, the electrophysiological mechanisms underlying these dynamics remain poorly understood. Using intracranial electrocorticography in humans performing a sustained attention task, we identified global oscillatory dynamics linked to attentional shifts. MW was characterized by (1) reduced theta (θ) and alpha (α) power, (2) decreased aperiodic signal components, indicating a shift toward cortical inhibition, (3) enhanced phase synchronization across networks, and (4) strengthened θ phase-behavior correlations (ρ). These features support a non-network-specific framework in which low-frequency θ dynamics—captured by both θ power and ρ—are associated with attentional fluctuations, while aperiodic offset relates to attentional state indirectly through its association with ρ (structural equation modeling: power → state β = − 0.118, p = 0.002; ρ → state β = 0.246, p < 0.001; offset → ρ β = − 0.222, p < 0.001). Our study provides a unified neurophysiological framework for understanding how spontaneous neural activity can drive attentional fluctuations and performance variability, with implications for research on attention, learning, and neuropsychiatric disorders.
    facebookinstagramtwitterYoutubelinkedin

    La Universidad

    • Normativa Institucional
    • Modelo Formativo
    • Planificación Estratégica
    • Transparencia
    • Acreditación
    • Imagen Corporativa

    Unidades

    • Vinculación con el Medio
    • Investigación
    • Internacional
    • Desarrollo y Relaciones Institucionales

    Servicios

    • Matrícula
    • Financiamiento
    • Biblioteca
    • Pago Online
    • Certificados en línea
    • Bolsa de trabajo Alumni

    Programas

    • Carreras Diurnas
    • Carreras Vespertinas
    • Cursos
    • Diplomados
    • Magíster
    • Especialidades

    Contáctanos

    • Avda. Pedro de Valdivia 1509
      Providencia, Santiago
    • Código Postal: 7501015
    • +56 2 24207100