Wireless Optogenetics

Wireless optogenetics is a neuroscience technique that uses remotely controlled, implanted light sources to activate or inhibit genetically targeted neurons without tethering an animal to external equipment. It works by expressing light-sensitive opsins in selected cells, then delivering specific wavelengths that alter ion conductance and neuronal activity when the device is triggered. This approach enables researchers to manipulate defined neural circuits in freely moving animals while recording changes in behavior, physiology, or network function. By reducing the physical constraints of wired systems, wireless optogenetics supports studies of complex behaviors and brain disorders in more naturalistic settings.

Wireless Optogenetics - Related Videos

Research

JoVE Journal - Neuroscience

In Vivo Wireless Optogenetic Control of Skilled Motor Behavior

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2021

The present protocol describes how to use wireless optogenetics combined with high-speed videography in a single pellet reach-to-grasp task to characterize the neural circuits involved in the performance of skilled motor behavior in freely moving mice.

Research

JoVE Journal - Neuroscience
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Optogenetic Functional MRI

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Cited by 15 •

2016

This protocol describes the steps and data analysis required to successfully perform optogenetic functional magnetic resonance imaging (ofMRI). ofMRI is a novel technique that combines high-field fMRI readout with optogenetic stimulation, allowing for cell type-specific mapping of functional neural circuits and their dynamics across the whole living brain.

A Detailed Protocol for Perspiration Monitoring Using a Novel, Small, Wireless Device

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Cited by 1 •

2016

Recently, we developed a small wireless device for perspiration monitoring. In this article, we present detailed protocols on how to use the device for perspiration monitoring with an example of the sympathetic activity test.

Implanting a Wireless Bidirectional Microelectrode System in a Rat Brain

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2025

The video demonstrates a procedure for implanting a wireless bidirectional multichannel electrode unit into a rat brain to record and stimulate multichannel neural networks.

Optogenetic Control of Hippocampal Network Dynamics

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2025

This video demonstrates the method to use optogenetics to modulate hippocampal network dynamics by activating genetically modified light-sensitive interneurons in a mouse brain slice, enhancing theta oscillation synchronization and studying neural circuit behavior.

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