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Silent synapse
Diminished Neuronal Activity Increases Neuron–Neuron Connectivity Underlying Silent Synapse Formation and the Rapid Conversion of Silent to Functional Synapses
A Synthetic Likelihood Solution to the Silent Synapse Estimation Problem
LTP, STP, and Scaling: Electrophysiological, Biochemical, and Structural Mechanisms
Structural LTP: from Synaptogenesis to Regulated Synapse Enlargement
Observation of Distressed Conspecific As a Model of Emotional Trauma
Chapter 11: Synaptic Plasticity (PDF)
Maturation of Silent Synapses in Amygdala-Accumbens Projection Contributes to Incubation of Cocaine Craving
A Synthetic Likelihood Solution to the Silent Synapse Estimation Problem
Silent Synapses in the Developing Rat Visual Cortex: Evidence for Postsynaptic Expression of Synaptic Plasticity
Born Hippocampal Granule Cells Liyi Li1, Se´ Bastien Sultan2, Stefanie Heigele1, Charlotte Schmidt-Salzmann3, Nicolas Toni2, Josef Bischofberger1*
Silent Synapses Speak up Minireview
Active Zones for Presynaptic Plasticity in the Brain
Chronic Inactivation of a Neural Circuit Enhances LTP by Inducing Silent Synapse Formation
Progressive Maturation of Silent Synapses Governs the Duration of a Critical Period
Synaptic Plasticity: Multiple Forms, Functions, and Mechanisms
Recurrently Connected Silicon Neurons with Active Dendrites for One-Shot Learning
Silent Synapses Generate Sparse and Orthogonal Action Potential Firing In
Distinct Roles for Ionotropic and Metabotropic Glutamate Receptors in the Maturation of Excitatory Synapses
Top View
Structure and Plasticity of Silent Synapses in Developing
Silent Synapse Activation in Epilepsy
Silent Synapses in Neural Plasticity: Current Evidence
PKN1 Promotes Synapse Maturation by Inhibiting Mglur-Dependent
Stimulation of Glutamate Receptor Protein Synthesis and Membrane Insertion Within Isolated Neuronal Dendrites
A Role for Silent Synapses in the Development of the Pathway from Layer 2/3 to 5 Pyramidal Cells in the Neocortex
Synaptic Weight Modulation and Adaptation Part II: Postsynaptic Mechanisms
Synapse Specificity of Long-Term Potentiation Breaks Down at Short