Extracellular Brain Activity

Extracellular brain activity refers to electrical signals generated by neural tissue and detected outside individual cells, providing a population-level view of brain function. Electrodes record voltage changes produced when transmembrane ionic currents and synaptic inputs spread through the surrounding tissue, capturing fast action potentials as well as slower local field potentials. In neuroscience, extracellular recordings help relate coordinated neuronal activity to sensory processing, movement, sleep, and disease-related network dysfunction. Multi-electrode arrays and high-density probes can sample activity across brain regions, supporting circuit mapping, brain-computer interfaces, and the study of how collective dynamics emerge from individual neurons.

Extracellular Brain Activity - Related Videos

Research

JoVE EoE - Neuropathology

Microdialysis of Interstitial Fluid from a Mouse Brain to Isolate Extracellular Proteins

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2025

The video demonstrates the process of using a microdialysis probe to collect extracellular proteins from the interstitial fluid (ISF) of a mouse brain. A microdialysis probe, equipped with a high-molecular-weight cut-off semi-permeable membrane, is inserted into the brain of an anesthetized mouse via an implanted guide cannula. The probe, connected to pumps, allows a physiological buffer to perfuse the brain tissue and mix with the ISF. Proteins in the ISF diffuse across the semi-permeable...

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.

Characterizing Extracellular Space in a Brain Slice Using Ion-Selective and Iontophoresis Microelectrodes

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2025

This video demonstrates how to characterize the extracellular space in a brain slice by using ion-selective and iontophoresis microelectrodes to measure and compare electrical signals. This process helps determine the space's volume fraction and degree of twisting.

Research

JoVE Journal - Neuroscience
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Double-barreled and Concentric Microelectrodes for Measurement of Extracellular Ion Signals in Brain Tissue

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Cited by 19 •

2015

We demonstrate the fabrication, calibration and properties of two types of ion-selective microelectrodes (double-barreled and concentric) for measurement of ion concentrations in brain tissue. These are then used in the mouse hippocampal slice preparation to show that excitatory activity changes both extracellular potassium and sodium concentrations.

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.

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