Single Unit Spiking

Single unit spiking refers to the detection and analysis of action potentials generated by an individual neuron, providing a precise measure of neural activity. In bioengineering, fine electrodes record extracellular voltage fluctuations, while signal processing and spike-sorting methods distinguish the characteristic waveform of one neuron from background activity and neighboring cells. These recordings reveal firing patterns, timing, and responses to stimuli, helping researchers study neural coding and circuit function. Single-unit data also support the development and evaluation of brain-computer interfaces, neural prostheses, and other bioelectronic systems that translate neuronal signals into engineered control signals.

Single Unit Spiking - Related Videos

Research

JoVE Journal - Neuroscience

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 3 •

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.

Research

JoVE Journal - Neuroscience
Free Sample

Retrograde Fluorescent Labeling Allows for Targeted Extracellular Single-unit Recording from Identified Neurons In vivo

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Cited by 14 •

2013

Retrograde transport of fluorescent dye labels a sub-population of neurons based on anatomical projection. Labeled axons can be visually targeted in vivo, permitting extracellular recording from identified axons. This technique facilitates recording when neurons cannot be labeled through genetic manipulation or are difficult to isolate using 'blind' in vivo approaches.

Triggering a Closed-Loop Stimulation by Neuron Spiking Activity

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2025

This video demonstrates the operation of closed-loop stimulation in a rat with a surgically implanted device to record neural activity. Neuronal signals are first recorded and analyzed. Template waveforms are then uploaded, and parameters are defined to trigger closed-loop stimulation.

Averaging of Viral Envelope Glycoprotein Spikes from Electron Cryotomography Reconstructions using Jsubtomo

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Cited by 23 •

2014

An approach is presented for determining structures of viral membrane glycoprotein complexes using a combination of electron cryo-tomography and sub-tomogram averaging with the computational package Jsubtomo.

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