Silicone Oil

Silicone oil is a chemically stable, hydrophobic liquid made from silicone-based polymers, valued for its adjustable viscosity, low surface tension, and resistance to oxidation. These properties allow it to form a water-repellent barrier, limit evaporation, and maintain controlled fluid interfaces without readily mixing with aqueous solutions. In neuroscience, silicone oil can support specialized electrophysiology, microscopy, and tissue-preparation systems by helping isolate solutions, protect experimental surfaces, or regulate exposure to air. Its physical behavior can improve environmental control during neural recording and imaging, while differences in viscosity and purity influence handling, optical performance, and compatibility with cells, tissues, and laboratory equipment.

Silicone Oil - Related Videos

Research

JoVE Journal - Engineering

Improved Polydimethylsiloxane (PDMS) Double Casting via Silicone Oil Treatment for Densely Packed Microstructure Replication

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2025

This protocol presents an improved demolding procedure for the Polydimethylsiloxane (PDMS) double casting technique by introducing silicone oil as a non-adhesive barrier between PDMS layers. Unlike plasma or chemical surface modification methods, this approach requires no specialized or costly equipment, making it a more accessible and cost-effective alternative.

A Reversible Silicon Oil-Induced Ocular Hypertension Model in Mice

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Cited by 33 •

2019

Here, we present a protocol to induce ocular hypertension and glaucomatous neurodegeneration in mouse eyes by intracameral injection of silicone oil and the procedure for silicone oil removal from the anterior chamber to return elevated intraocular pressure to normal.

Enhanced Oil Recovery using a Combination of Biosurfactants

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Cited by 2 •

2022

We illustrate the methods involved in screening and identification of the biosurfactant producing microbes. Methods for chromatographic characterization and chemical identification of the biosurfactants, determining the industrial applicability of the biosurfactant in enhancing residual oil recovery are also presented.

Large-scale Recording of Neurons by Movable Silicon Probes in Behaving Rodents

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Cited by 111 •

2012

We describe methods for large-scale recording of multiple single units and local field potential in behaving rodents with silicon probes. Drive fabrication, probe attachment to the drive and probe implantation processes are illustrated in sufficient details for easy replication.

Fabrication and Optimization of Type II Silicon Clathrate Films

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2025

The two-thermal annealing method enables the fabrication of thin films of type II semiconductor silicon clathrate. Post-synthesis treatments, including thermal pressing and reactive ion etching, were performed to improve the material properties. This approach provides an accessible pathway for fabricating tunable clathrate films suitable for next-generation electronic and photonic devices.

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