Nerve Signal Transmission

Nerve signal transmission is the process by which neurons generate and communicate electrical and chemical signals, enabling organisms to sense stimuli, coordinate movement, and regulate internal functions. A stimulus can trigger an action potential when voltage-gated sodium channels open and sodium ions enter the neuron, followed by potassium efflux that restores the membrane potential; at synapses, the signal promotes neurotransmitter release, which binds receptors on a neighboring cell. Studying this process helps explain neural circuits, sensory processing, and motor control, while providing a foundation for investigating neurological disorders and developing treatments that target ion channels, synapses, or neurotransmitter systems.

Nerve Signal Transmission - Related Videos

Research

JoVE Journal - Bioengineering

Transmission of Multiple Signals through an Optical Fiber Using Wavefront Shaping

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Cited by 10 •

2017

We demonstrate the transmission of multiple independent signals through a multimode fiber using wavefront shaping employing a single spatial light modulator. By modulating the wavefront for each signal individually, spatially separated foci are transmitted. Potential applications are multiplexed data transfer in communications engineering and endoscopic light delivery in biophotonics.

The Muscle Cuff Regenerative Peripheral Nerve Interface for the Amplification of Intact Peripheral Nerve Signals

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Cited by 5 •

2022

This manuscript provides an innovative method for developing a biologic peripheral nerve interface termed the Muscle Cuff Regenerative Peripheral Nerve Interface (MC-RPNI). This surgical construct can amplify its associated peripheral nerve's motor efferent signals to facilitate accurate detection of motor intent and the potential control of exoskeleton devices.

Non-invasive Assessment of Changes in Corticomotoneuronal Transmission in Humans

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Cited by 6 •

2017

The aim of the present study was to assess changes in transmission at the corticomotoneuronal synapses in humans after repetitive transcranial magnetic stimulation. For this purpose, an electrophysiological method is introduced that allows assessment of pathway specific corticospinal transmission, i.e. differentiation of fast, direct corticospinal pathways from polysynaptic connections.

Visualization of Mitochondria within Intraepidermal Nerve Fibers

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2025

Source: Hamid, H. S., et al. Three-dimensional Imaging and Analysis of Mitochondria within Human Intraepidermal Nerve Fibers. J. Vis. Exp. (2017) This video demonstrates the method for visualizing nerve-specific mitochondria using three-dimensional imaging. It outlines the process of acquiring sequential scans of pre-labeled intraepidermal nerve fibers and generating 3D surface images to isolate and display mitochondria in relation to nerve structures.

Inducing Local Demyelination in the Optic Nerve Using Lysolecithin

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2025

This video demonstrates the procedure of surgically accessing the optic nerve in an anesthetized animal and precisely delivering lysolecithin to induce focal demyelination, creating neuropathological conditions for further study.

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