Motor Evoked Potentials

Motor evoked potentials (MEPs) are electrical responses recorded from muscles after stimulation of the motor pathways, providing a functional measure of corticospinal tract integrity. In neuroscience, transcranial magnetic or electrical stimulation activates motor cortical neurons, sends descending signals through the corticospinal tract, and produces muscle activity that surface electromyography records as waveform amplitude and latency. Researchers and clinicians use MEPs to assess motor system function, monitor changes during neurosurgery, and investigate neurological disorders affecting the brain, spinal cord, or peripheral motor pathways. MEP measurements also support studies of motor control, neuroplasticity, rehabilitation, and treatment outcomes.

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JoVE EoE - Neurophysiology

Recording of Electroretinogram and Visual Evoked Potential in a Rat

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2025

This video demonstrates how to record electroretinogram (ERG) and visual evoked potential (VEP) in a conscious rat. The rat, with surgically implanted electrodes, is first dark-adapted. After applying dilating drops, the animal is placed in a restrainer and positioned in a Ganzfeld bowl. The ERG and VEP signals are then recorded.

Recording of Visual Evoked Potentials via the Skull Electrodes in a Rat Model

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2025

This video demonstrates the process of measuring visual evoked potentials or VEPs in a dark-adapted, anesthetized rat with pre-implanted skull electrodes, which record the electrical signals from the brain's visual cortex in response to light stimuli.

Simultaneous Recording of Electroretinography and Visual Evoked Potentials in Anesthetized Rats

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Cited by 13 •

2016

This protocol describes simultaneous measurement of electroretinogram and visual evoked potentials in anesthetized rats.

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.

Biosensing Motor Neuron Membrane Potential in Live Zebrafish Embryos

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Cited by 3 •

2017

Protocols described here allow for the study of the electrical properties of excitable cells in the most non-invasive physiological conditions by employing zebrafish embryos in an in vivo system together with a fluorescence resonance energy transfer (FRET)-based genetically encoded voltage indicator (GEVI) selectively expressed in the cell type of interest.

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