Optical Stimulator Setup

Optical stimulator setup is the arrangement of light sources, optical components, and control equipment used to deliver precisely defined light stimuli in biological experiments. The system typically regulates wavelength, intensity, pulse duration, and timing, while lenses, filters, fibers, or mirrors direct light to the sample or biological target. In biology, careful calibration and alignment help ensure that experimental responses reflect the intended illumination rather than variation in light delivery. These setups support studies of photoreception, cellular signaling, neural activity, behavior, and optically controlled biological processes, enabling reproducible measurements and comparisons across experiments.

Optical Stimulator Setup - Related Videos

Research

JoVE Journal - Neuroscience

Gold Nanorod-assisted Optical Stimulation of Neuronal Cells

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Cited by 9 •

2015

This protocol outlines how to use the transient heating associated with the optical absorption of gold nanorods to stimulate differentiation and intracellular calcium activity in neuronal cells. These results potentially open up new applications in neural prostheses and fundamental studies in neuroscience.

Fiber-optic Implantation for Chronic Optogenetic Stimulation of Brain Tissue

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Cited by 50 •

2012

The development of optogenetics now provides the means to precisely stimulate genetically defined neurons and circuits, both in vitro and in vivo. Here we describe the assembly and implantation of a fiber optic for chronic photostimulation of brain tissue.

Multifunctional Setup for Studying Human Motor Control Using Transcranial Magnetic Stimulation, Electromyography, Motion Capture, and Virtual Reality

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Cited by 13 •

2015

Transcranial magnetic stimulation, electromyography, and 3D motion capture are commonly used non-invasive techniques for investigating neuromuscular function in humans. In this paper, we describe a protocol that synchronously samples data generated by all three of these tools along with the unique addition of virtual reality stimulus presentation and feedback.

Live Cell Response to Mechanical Stimulation Studied by Integrated Optical and Atomic Force Microscopy

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Cited by 17 •

2010

This paper aims to instruct the reader in the operation of an integrated atomic force-optical imaging microscope for mechanical stimulation of live cells in culture. A step-by-step protocol is presented. A representative data set that shows live cell response to mechanical stimulation is presented.

A Low Cost Setup for Behavioral Audiometry in Rodents

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Cited by 17 •

2012

A fast and inexpensive method for the behavioral determination of hearing parameters like hearing thresholds, hearing impairments or phantom perceptions (subjective tinnitus) is described. It uses pre-pulse inhibition of the acoustic startle response and can be easily implemented in a personal computer using a programmable AD/DA-converter and a piezo sensor.

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