Electrophysiological Response

Electrophysiological response is the change in a cell or tissue’s electrical activity after stimulation, reflecting how biological systems receive, process, and transmit information. It arises when stimuli alter ion-channel opening in the cell membrane, changing ion movement and membrane potential; sufficiently large changes can trigger action potentials that propagate along excitable cells. Researchers measure these responses with electrodes, patch-clamp recordings, or related voltage and current techniques to study neurons, muscles, sensory cells, and electrically active tissues. In biology, electrophysiological analysis helps characterize cell function, investigate neural and cardiac disorders, evaluate drug effects, and connect molecular mechanisms with organism-level behavior.

Electrophysiological Response - Related Videos

Research

JoVE Journal - Neuroscience

Electrophysiological Recording from Drosophila Trichoid Sensilla in Response to Odorants of Low Volatility

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Cited by 16 •

2017

The overall goal of this protocol is to demonstrate how to present odorants of low volatility for single-sensillum recording from Drosophila olfactory receptor neurons that respond to long-chain cuticular pheromones.

Research

JoVE Journal - Neuroscience
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Dual Electrophysiological Recordings of Synaptically-evoked Astroglial and Neuronal Responses in Acute Hippocampal Slices

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Cited by 19 •

2012

The preparation of acute brain slices from isolated hippocampi, as well as the simultaneous electrophysiological recordings of astrocytes and neurons in stratum radiatum during stimulation of schaffer collaterals is described. The pharmacological isolation of astroglial potassium and glutamate transporter currents is demonstrated.

Electrophysiological Recordings from Drosophila Sensilla in Response to Volatile Odorants

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2025

In this video, a live Drosophila fly is mounted in a tube for electrophysiological studies. Electrodes are positioned at the base of the sensillum to record specific neuronal responses to pheromones with the fly's olfactory receptor neurons.

Research

JoVE Journal - Medicine
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Non-fluoroscopic Catheter Tracking for Fluoroscopy Reduction in Interventional Electrophysiology

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Cited by 4 •

2015

Radiation exposure is an underestimated risk in complex ablation procedures. Here, we describe a protocol to significantly decrease fluoroscopy time and dosage for both the patient and the lab staff by using a novel non-fluoroscopic catheter visualization system.

Research

JoVE Journal - Neuroscience
Free Sample

Electrophysiological Method for Recording Intracellular Voltage Responses of Drosophila Photoreceptors and Interneurons to Light Stimuli In Vivo

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Cited by 14 •

2016

Sharp microelectrodes enable accurate electrophysiological characterization of photoreceptor and visual interneuron output in living Drosophila. Here we show how to use this method to record high-quality voltage responses of individual cells to controlled light stimulation. This method is ideal for studying neural information processing in insect compound eyes.

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