Single Cell Recording

Single cell recording is a technique for measuring the electrical activity or physiological responses of an individual cell, allowing researchers to resolve behavior that population-level measurements can obscure. In a common approach, a fine microelectrode or patch pipette forms an electrical connection with the cell membrane, enabling detection of membrane potential, ion currents, or action potentials under controlled conditions. In biology, these recordings help characterize neuronal signaling, ion channel function, synaptic transmission, and cellular responses to drugs or stimuli. The resulting data link cellular mechanisms to tissue and organismal function, supporting research in neuroscience, pharmacology, and disease physiology.

Single Cell Recording - Related Videos

Research

JoVE Journal - Biology

Single-cell Suction Recordings from Mouse Cone Photoreceptors

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Cited by 9 •

2010

We will show how to record flash responses from single mouse cones using a suction electrode.

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...

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.

In Vivo Recording of Intracellular Signals from a Single Neuron

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2025

This video demonstrates the recording of electrical signals from single brain neurons using a fine-tipped glass micropipette and a specialized setup. The micropipette is carefully inserted into the rat's brain and is buzzed to penetrate the neuron to record internal neuronal electrical signals.

Single Sensillum Recordings in the Insects Drosophila melanogaster and Anopheles gambiae

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Cited by 46 •

2010

Electrophysiological responses of olfactory sensory neurons to odorants can be measured in insects using single sensillum recordings. In this video article we will demonstrate how to perform single sensillum recordings in the antennae of the vinegar fly (Drosophila melanogaster) and the maxillary palps of the malaria mosquito (Anopheles gambiae).

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