Gas Gun Method

The gas gun method is an experimental technique that uses pressurized gas to launch a projectile at high velocity, enabling controlled studies of impact, deformation, and shock-wave behavior. In a typical system, compressed gas expands behind a projectile or sabot, accelerating it through a barrel toward a target; measured impact velocity and diagnostic signals help relate loading conditions to the target’s response. In physics, gas guns support research in high-strain-rate mechanics, material strength, ballistic performance, and planetary-impact processes. The method provides repeatable conditions for testing how materials behave under extreme pressure, temperature, and rapid deformation.

Gas Gun Method - Related Videos

Research

JoVE Journal - Biology

Gene-gun Transfection of Hippocampal Neurons

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Cited by 2 •

2006

Research

JoVE Journal - Biology
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Preparation of Gene Gun Bullets and Biolistic Transfection of Neurons in Slice Culture

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Cited by 90 •

2008

We describe a method for preparing DNA coated gold bullets and demonstrate the use of such bullets to biolistically transfect neurons in cultured hippocampal slices.

Transient Gene Expression in Tobacco using Gibson Assembly and the Gene Gun

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Cited by 8 •

2014

This work describes a novel method for selectively targeting subcellular organelles in plants, assayed using the BioRad Gene Gun.

Biolistic-Mediated Gene Transfer: A Technique to Deliver Gene of Interest in Target Cells via a Biolistic Gene Gun

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2025

In this video, we demonstrate the protocol of biolistic gene gun-mediated gene delivery in cultured cells. This method provides a simple method of stable genetic transformation using a minimal quantity of DNA.

Bimolecular Fluorescence Complementation (BiFC) Assay for Protein-Protein Interaction in Onion Cells Using the Helios Gene Gun

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Cited by 18 •

2010

This article illustrates how to properly use the BioRad Helios Gene Gun to introduce plasmid DNA into onion epidermal cells and how to test for protein-protein interactions in onion cells based on the principle of Bimolecular Fluorescence Complementation...

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