Synaptic Conductive Behavior

Synaptic conductive behavior describes the history-dependent modulation of electrical conductance in a material or device, analogous to how biological synapses adjust signal transmission. In chemically active systems, an applied voltage or chemical stimulus can drive ion migration, charge trapping, or reversible redox reactions, changing the concentration or arrangement of mobile charge carriers and producing short- or long-term conductance changes. Studying these processes connects chemistry with materials science and neuromorphic engineering, where such behavior supports artificial synapses, adaptive sensors, and low-power computing architectures. Characterizing conductivity, retention, and response to repeated stimuli helps relate molecular processes to device-level learning functions.

Synaptic Conductive Behavior - Related Videos

Research

JoVE Journal - Neuroscience

Implementing Dynamic Clamp with Synaptic and Artificial Conductances in Mouse Retinal Ganglion Cells

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Cited by 5 •

2013

This video article illustrates the set-up, the procedures to patch cell bodies and how to implement dynamic clamp recordings from ganglion cells in whole-mount mouse retinae. This technique allows the investigation of the precise contribution of excitatory and inhibitory synaptic inputs, and their relative magnitude and timing to neuronal spiking.

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.

Monitoring Changes in the Intracellular Calcium Concentration and Synaptic Efficacy in the Mollusc Aplysia

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Cited by 4 •

2012

We demonstrate how changes in the intracellular free calcium concentration and synaptic efficacy can be simultaneously monitored in a ganglion preparation of Aplysia. We image intracellular calcium using a fluorescent dye, Calcium Orange, and induce and monitor synaptic transmission with sharp (intracellular) electrodes.

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.

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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