Extracellular Field Recordings

Extracellular field recordings are electrophysiological measurements that capture voltage fluctuations generated by neural activity outside individual cells, making them important for studying how populations of neurons function together. An electrode placed near brain tissue detects the summed transmembrane currents of nearby neurons, including slower local field potentials and, with suitable sampling, faster action-potential signals, without penetrating cell membranes. In neuroscience, these recordings reveal network oscillations, synaptic activity, synchrony, and changes in circuit dynamics during behavior or stimulation. They support research on sensory processing, learning, sleep, epilepsy, and other neurological conditions, while providing a scalable approach for monitoring activity across multiple sites.

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JoVE EoE - Neurophysiology

Extracellular Recording of Electrical Activity in the Drosophila Central Nervous System

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2025

The video demonstrates the extracellular recording of neuronal activity from the central nervous system (CNS) of Drosophila larvae. The transected CNS is positioned in a recording chamber, and the electrical activity from a descending nerve is recorded to establish the baseline firing frequency. A test agent is then introduced, and the change in firing frequency is recorded to determine the agent's excitatory or inhibitory effect.

Recording of Local Field Potential in Mouse Hippocampal-Entorhinal Cortex Slices

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2025

The video demonstrates a procedure to record the local field potential (LFP) in mouse hippocampal-entorhinal cortex slices. Electrical stimulation is provided at the CA3 stratum radiatum of the hippocampus, which causes changes in the postsynaptic potential at the CA1 stratum pyramidale. The combined change in the membrane potential of CA1 neurons, termed the local field potential, is recorded.

Recording of Local Field Potential from Both Hemispheres of the Mouse Brain

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2025

This video demonstrates in vivo recording of local field potential (LFP) from bilateral M2 areas of the mouse brain. An anesthetized mouse is secured and prepared for the procedure. To record LFPs, insert microelectrodes into the target coordinates of the bilateral M2 areas, which are responsible for complex motor movements.

Extracellular Wire Tetrode Recording in Brain of Freely Walking Insects

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Cited by 24 •

2014

We previously developed a technique for implanting tetrode wires into the central complex of cockroach brains that allows us to monitor activity in individual units of tethered cockroaches. Here we present a modified version of that technique that allows us to also record brain activity in freely moving insects.

Concurrent Electroencephalographic and Local Field Potential Recordings in an Anesthetized Rat

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2025

This video demonstrates the procedure for concurrent recordings of co-localized electroencephalography (EEG) and local field potentials (LFPs) in an anesthetized rat. The process involves preparing the rat and attaching stimulating electrodes to its whisker pads. An EEG spider electrode is placed on the rat's skull for surface EEG measurements. At the same time, a multi-channel microelectrode is inserted into a specific brain region through a burr hole in the skull to record neural activity...

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