Electrophysiology Rig

An electrophysiology rig is a laboratory setup used to record and analyze the electrical activity of cells, tissues, or organs, making it essential for studying how biological systems communicate and function. The system typically uses electrodes to detect voltage changes or inject controlled current, while amplifiers and data-acquisition equipment convert weak bioelectric signals into measurable recordings. In biology, electrophysiology rigs support investigations of neuronal signaling, muscle contraction, membrane properties, and ion-channel activity. These measurements help researchers relate electrical behavior to cellular mechanisms, disease processes, and the effects of drugs or other experimental conditions.

Electrophysiology Rig - Related Videos

Research

JoVE Journal - Biology

Applying Microfluidics to Electrophysiology

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Cited by 1 •

2007

Microfluidics can be integrated with standard electrophysiology techniques to allow new experimental modalities. Specifically, the motivation for the ...

Monitoring Activation of the Antiviral Pattern Recognition Receptors RIG-I And PKR By Limited Protease Digestion and Native PAGE

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Cited by 12 •

2014

Innate defenses to virus infections are triggered by pattern recognition receptors (PRRs). The two cytoplasmic PRRs RIG-I and PKR bind to viral signature RNAs, change conformation, oligomerize, and activate antiviral signaling. Methods are described which allow to conveniently monitor the conformational switching and the oligomerization of these cytoplasmic PRRs.

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.

Forebrain Electrophysiological Recording in Larval Zebrafish

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Cited by 55 •

2013

A simple method to record extracellular field potentials in the larval zebrafish forebrain is described. The method provides a robust in vivo read-out of seizure-like activity. This technique can be used with genetically modified zebrafish larvae carrying epilepsy-related genes or seizures evoked by administration of convulsant drugs.

Electrophysiological Recording From Drosophila Labellar Taste Sensilla

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Cited by 28 •

2014

This protocol describes extracellular recording of the action potential responses fired by labellar taste neurons in Drosophila.

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