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Excitatory synapse

  • A Guide to Glutamate Receptors

    A Guide to Glutamate Receptors

  • The Interplay Between Neurons and Glia in Synapse Development And

    The Interplay Between Neurons and Glia in Synapse Development And

  • PRESYNAPTIC Α2δ SUBUNITS ARE KEY ORGANIZERS of GLUTAMATERGIC SYNAPSES Clemens L

    PRESYNAPTIC Α2δ SUBUNITS ARE KEY ORGANIZERS of GLUTAMATERGIC SYNAPSES Clemens L

  • Neural Control and Neuromodulationof Lower Urinary

    Neural Control and Neuromodulationof Lower Urinary

  • Electrical Synapses and Their Functional Interactions with Chemical Synapses

    Electrical Synapses and Their Functional Interactions with Chemical Synapses

  • Developmental Changes in Calcium Channel Types Mediating Central Synaptic Transmission

    Developmental Changes in Calcium Channel Types Mediating Central Synaptic Transmission

  • GABA Enhances Transmission at an Excitatory Glutamatergic Synapse

    GABA Enhances Transmission at an Excitatory Glutamatergic Synapse

  • Presynaptic Establishment of the Synaptic Cleft Extracellular Matrix Is Required for Post-Synaptic Differentiation

    Presynaptic Establishment of the Synaptic Cleft Extracellular Matrix Is Required for Post-Synaptic Differentiation

  • Slitrk2 Controls Excitatory Synapse Development Via PDZ-Mediated

    Slitrk2 Controls Excitatory Synapse Development Via PDZ-Mediated

  • Glial Contribution to Excitatory and Inhibitory Synapse Loss in Neurodegeneration Henstridge, Christopher; Tzioras, Makis; Paolicelli, Rosa Chiara

    Glial Contribution to Excitatory and Inhibitory Synapse Loss in Neurodegeneration Henstridge, Christopher; Tzioras, Makis; Paolicelli, Rosa Chiara

  • Final Copy 2019 01 23 Gurun

    Final Copy 2019 01 23 Gurun

  • Redistribution and Stabilization of Cell Surface Glutamate Receptors During Synapse Formation

    Redistribution and Stabilization of Cell Surface Glutamate Receptors During Synapse Formation

  • V=Nx76xs 4FRE the Following Content Is Provided Under a Creative Commons License

    V=Nx76xs 4FRE the Following Content Is Provided Under a Creative Commons License

  • Presynaptic Molecular Mechanisms That Control Quantal Neurotransmitter Discharge

    Presynaptic Molecular Mechanisms That Control Quantal Neurotransmitter Discharge

  • Mathematical Foundations of Neuroscience

    Mathematical Foundations of Neuroscience

  • Introducing Dopamine and Serotonin Background: the Synapse Release

    Introducing Dopamine and Serotonin Background: the Synapse Release

  • Oxford Handbooks Online (

    Oxford Handbooks Online (

  • Formatting Instructions for NIPS -17

    Formatting Instructions for NIPS -17

Top View
  • Synapses Models of the Synapse
  • Transmission at the Synapse and the Neuromuscular Junction
  • 5.8 Synaptic Conductances 27
  • Cell Biology: Organelles Cell Biology: Mitochondria Molecular Biology: the Nucleus
  • Acetylcholine Disinhibits Hippocampal Circuits to Enable Rapid Formation of Overlapping Memory Ensembles
  • Differentiation and Characterization of Excitatory and Inhibitory Synapses by Cryo-Electron Tomography and Correlative Microscopy
  • Neuromodulation of Excitatory Synaptogenesis in Striatal Development
  • Biology 251 Fall 2015 1 TOPIC 5: SYNAPSES and NEURONAL
  • SPARCL1 Promotes Excitatory but Not Inhibitory Synapse Formation and Function Independent of Neurexins and Neuroligins
  • Acetylcholine Is an Excitatory
  • Lysosomal Functions in Glia Associated with Neurodegeneration
  • Fundamentals of the Nervous System and Nervous Tissue 347
  • Mechanisms Shaping Excitatory Transmission at the Developing Retinogeniculate Synapse
  • Dopamine: the Neuromodulator of Long-Term Synaptic Plasticity, Reward and Movement Control
  • Neurobiology of Intellectual Disabilities
  • Control by Neuromodulation: a Tutorial
  • Assessing the Morphology of Vesicles in Inhibitory Symmetric Synapses in Safety and Fear Conditions in the Rat Lateral Amygdala
  • O-Glcnac Transferase Regulates Excitatory Synapse Maturity


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