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Synapse

  • Plp-Positive Progenitor Cells Give Rise to Bergmann Glia in the Cerebellum

    Plp-Positive Progenitor Cells Give Rise to Bergmann Glia in the Cerebellum

  • Control of Synapse Number by Glia Erik M

    Control of Synapse Number by Glia Erik M

  • Area-Specific Synapse Structure in Branched Posterior Nucleus Axons Reveals a New Level of Complexity in Thalamocortical Networks

    Area-Specific Synapse Structure in Branched Posterior Nucleus Axons Reveals a New Level of Complexity in Thalamocortical Networks

  • The Interplay Between Neurons and Glia in Synapse Development And

    The Interplay Between Neurons and Glia in Synapse Development And

  • Electrical Synapses and Their Functional Interactions with Chemical Synapses

    Electrical Synapses and Their Functional Interactions with Chemical Synapses

  • Part III: Modeling Neurotransmission – a Cholinergic Synapse

    Part III: Modeling Neurotransmission – a Cholinergic Synapse

  • Synaptophysin Regulates Activity-Dependent Synapse Formation in Cultured Hippocampal Neurons

    Synaptophysin Regulates Activity-Dependent Synapse Formation in Cultured Hippocampal Neurons

  • NEURAL CONNECTIONS: Some You Use, Some You Lose

    NEURAL CONNECTIONS: Some You Use, Some You Lose

  • RIM-BP2 Primes Synaptic Vesicles Via Recruitment of Munc13-1 At

    RIM-BP2 Primes Synaptic Vesicles Via Recruitment of Munc13-1 At

  • Functional Consequences of Synapse Remodeling Following Astrocyte-Specific Regulation of Ephrin-B1 in the Adult Hippocampus

    Functional Consequences of Synapse Remodeling Following Astrocyte-Specific Regulation of Ephrin-B1 in the Adult Hippocampus

  • Microglia-Mediated Synapse Loss in Alzheimer's Disease

    Microglia-Mediated Synapse Loss in Alzheimer's Disease

  • Neuron-Satellite Glial Cell Interactions in Sympathetic Nervous System Development

    Neuron-Satellite Glial Cell Interactions in Sympathetic Nervous System Development

  • Synapse Transmission

    Synapse Transmission

  • Investigating Synapse Formation and Function Using Human Pluripotent Stem Cell-Derived Neurons

    Investigating Synapse Formation and Function Using Human Pluripotent Stem Cell-Derived Neurons

  • Neurotransmission Fact Sheet

    Neurotransmission Fact Sheet

  • Chemical Transmission Between DRG Somata Via Intervening Satellite Cell

    Chemical Transmission Between DRG Somata Via Intervening Satellite Cell

  • Evidence for Oligodendrocyte Progenitor Cell Heterogeneity in the Adult Mouse Brain

    Evidence for Oligodendrocyte Progenitor Cell Heterogeneity in the Adult Mouse Brain

  • Synapse Formation: What Happens Once an Axon Finds Its Target?

    Synapse Formation: What Happens Once an Axon Finds Its Target?

Top View
  • Neural Activity-Dependent Regulation of Radial Glial Filopodial Motility Is
  • The Function of Dendritic Spines: Devices Subserving Biochemical Rather Than Electrical Compartmentalization
  • Regulation of Dendrite Morphology and Excitatory Synapse Formation by Zdhhc15 Bhavin S
  • Satellite Glial Cells Modulate Cholinergic Transmission
  • Cell Type Composition and Circuit Organization of Neocortical Radial
  • Improved Signaling As a Result of Randomness in Synaptic Vesicle Release
  • Molecular Mechanisms in Synaptic Vesicle Recycling
  • Development of an in Vitro Model for Activation of Satellite Glial Cells in The
  • Multiple Signaling Pathways Are Essential for Synapse Formation Induced by Synaptic Adhesion Molecules
  • The Timing of Synaptic Vesicle Endocytosis (FM 1-43/Confocal Microscopy/Recycling) TIMOTHY A
  • Synapse Manual
  • Chemical and Electrical Synapses Two Kinds of Synapses 1
  • Oligodendrocyte Precursor Cells Prune Axons in the Mouse Neocortex
  • Lysosomal Functions in Glia Associated with Neurodegeneration
  • Cell of All Trades: Oligodendrocyte Precursor Cells in Synaptic, Vascular, and Immune Function
  • Overview of Synaptic Transmission 179
  • Regulation of Synaptic Development by Astrocyte Signaling Factors and Their Emerging Roles in Substance Abuse
  • Engulfed by Glia: Glial Pruning in Development, Function, and Injury Across Species


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