Synaptic Excitation

Synaptic excitation is the process by which communication between neurons, or between neurons and target cells, increases the likelihood that the receiving cell will generate an electrical response, making it central to nervous-system signaling and pharmacology. It typically begins when an excitatory neurotransmitter, such as glutamate, binds postsynaptic receptors and opens ion channels that allow positively charged ions to enter, producing a depolarizing excitatory postsynaptic potential; if threshold is reached, the neuron fires an action potential. Studying this process helps explain how drugs alter neural activity through receptor agonism, antagonism, or channel modulation, with relevance to pain, epilepsy, learning, and disorders involving imbalanced excitation.

Synaptic Excitation - Related Videos

Research

JoVE Journal - Neuroscience

Studying Synaptic Vesicle Pools using Photoconversion of Styryl Dyes

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Cited by 18 •

2010

FM dyes have been of invaluable help in the understanding of synaptic dynamics. FMs are normally followed under the fluorescent microscope during different stimulation conditions. However, photoconversion of FM dyes combined with electron microscopy allows the visualization of distinct synaptic vesicle pools, among other ultrastructure components, in synaptic boutons.

Induction of an Isoelectric Brain State to Investigate the Impact of Endogenous Synaptic Activity on Neuronal Excitability In Vivo

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Cited by 3 •

2016

This procedure performs long-lasting in vivo intracellular recordings from single neurons during physiologically relevant cerebral states and after complete abolition of ongoing electrical activities, resulting in an isoelectric brain state. The physiological constants of the animal are carefully monitored during the transition to the artificial comatose condition.

Research

JoVE Journal - Neuroscience
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Vibrodissociation of Neurons from Rodent Brain Slices to Study Synaptic Transmission and Image Presynaptic Terminals

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Cited by 17 •

2011

This report demonstrates a technique for mechanical isolation of individual viable neurons retaining attached presynaptic boutons. Vibrodissociated neurons have the advantages of rapid production, excellent pharmacological control and improved space-clamp without influence from neighboring cells. This method can be used for imaging of synaptic elements and patch-clamp recording.

External Excitation of One-Dimensional Patterned Neuronal Cultures

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2025

This video demonstrates a technique for stimulating line-patterned neuronal cultures with a uniform, unidirectional electric field.

Automated Quantification of Synaptic Fluorescence in C. elegans

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Cited by 5 •

2012

The abundance of neurotransmitter receptors clustered at synapses strongly influences synaptic strength. This method quantifies fluorescently-labeled neurotransmitter receptors in three dimensions with single-synapse resolution in C. elegans, allowing hundreds of synapses to be rapidly characterized within a single sample without distortions introduced by z-plane projection.

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