High Speed Optical Recordings

High speed optical recordings are imaging techniques that capture rapid biological events with high temporal resolution, allowing researchers to observe changes that conventional microscopy may miss. They work by combining fast cameras or light detectors with optical probes, such as fluorescent indicators, whose intensity or spectrum changes in response to cellular activity; synchronized illumination and acquisition preserve the timing of these signals. In biology, these recordings reveal processes including neuronal signaling, intracellular calcium dynamics, muscle contraction, and fast cell interactions. By linking optical signals to physiological events, the approach supports quantitative analysis of living systems and helps clarify mechanisms that unfold on millisecond-to-second timescales.

High Speed Optical Recordings - Related Videos

Research

JoVE Journal - Neuroscience

Single-unit In vivo Recordings from the Optic Chiasm of Rat

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Cited by 2 •

2010

Retinal ganglion cells transmit visual information from the eye to the brain with sequences of action potentials. Here, we demonstrate how to record the action potentials of single ganglion cells in vivo from anesthetized rats.

High-Speed Optical Diagnostics of a Supersonic Ping-Pong Cannon

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2023

We describe a method for the construction of a supersonic ping-pong cannon (SSPPC) along with optical diagnostic techniques for the measurement of ball velocities and the characterization of propagating shock waves during the firing of the cannon.

Optical Recording of Electrical Activity in Guinea-pig Enteric Networks using Voltage-sensitive Dyes

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Cited by 10 •

2009

This protocol illustrates how voltage-sensitive dyes enable optical recording of electrical activity from intact neural networks such as the plexuses of the guinea-pig enteric nervous system, with an adjustable resolution that ranges from single-cells to multi-ganglionic circuitry.

Optical Recording of Suprathreshold Neural Activity with Single-cell and Single-spike Resolution

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Cited by 1 •

2012

Understanding the function of the vertebrate central nervous system requires recordings from many neurons because cortical function arises on the level of populations of neurons. Here we describe an optical method to record suprathreshold neural activity with single-cell and single-spike resolution, dithered random-access scanning. This method records somatic fluorescence calcium signals from up to 100 neurons with high temporal resolution. A maximum-likelihood algorithm deconvolves the...

Visual Evoked Potential Recording in a Rat Model of Experimental Optic Nerve Demyelination

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Cited by 14 •

2015

Focal demyelination is induced in the optic nerve using lysolecithin microinjection. Visual evoked potentials are recorded via skull electrodes implanted over the visual cortex to examine the signal conduction along the visual pathway in vivo. This protocol details the surgical procedures underlying electrode implantation and optic nerve microinjection.

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