Micromanipulator Electrode Insertion

Micromanipulator Electrode Insertion is a precision technique used to place recording or stimulating electrodes accurately within neural tissue or near individual neurons. A micromanipulator converts controlled movements along one or more axes into fine electrode positioning, allowing researchers to advance the electrode while observing its location and limiting tissue disruption. This approach supports electrophysiological methods such as extracellular recording, intracellular recording, and neural stimulation, where electrode placement strongly affects signal quality and experimental reproducibility. In neuroscience, it enables measurement of neuronal activity, investigation of circuit function, and targeted manipulation of brain regions in cellular, tissue, and in vivo preparations.

Micromanipulator Electrode Insertion - Related Videos

Research

JoVE Journal - Biology
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Microiontophoresis and Micromanipulation for Intravital Fluorescence Imaging of the Microcirculation

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Cited by 3 •

2011

Microiontophoresis entails movement of ions from a micropipette in response to a difference in electrical potential between the inside and outside of the micropipette. Biologically active molecules are thereby delivered in proportion to electrical current. We illustrate acetylcholine microiontophoresis in conjunction with micromanipulation to study endothelium-dependent vasodilation in the microcirculation.

Research

JoVE EoE - Neurophysiology

Implanting an Electrode into the Subthalamic Nucleus of a Rat

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2025

The video demonstrates a procedure for implanting an electrode into the subthalamic nucleus of a rat to deliver electrical stimuli.

Micromanipulation of Chromosomes in Insect Spermatocytes

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Cited by 9 •

2018

In this protocol, we describe the selection and preparation of appropriate cells for micromanipulation and the use of a piezoelectric micromanipulator to reposition chromosomes within those cells.

Constructing Patterned Neuronal Circuits on a Multi-Electrode Array

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2025

This video demonstrates the process of culturing neuronal cells on a patterned multi-electrode array (MEA) to establish modular neuronal networks. This method allows the study of neural signal transmission and cellular interactions.

Single Cell Sampling Using Micromanipulation: A Technique to Isolate Single Cells from Cancer Cell Suspension

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2023

This video describes the technique for isolating single cells from a pool of target cells to carry out downstream analysis. In this method, a micromanipulator fitted to a microscope is used for high-precision isolation of a single target cell.

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