Resin Infiltration

Resin infiltration is a minimally invasive technique that penetrates porous biological tissues or lesion sites with a low-viscosity resin, helping stabilize their structure without removing substantial material. In dental applications, an acid etchant opens pathways within early enamel caries, while drying and capillary action draw the resin into the lesion; light curing then hardens it and blocks further fluid movement. The method can arrest or slow the progression of noncavitated lesions, improve the appearance of white-spot defects, and preserve healthy tissue. As a biology-related approach, resin infiltration illustrates how material properties and tissue microstructure can be combined for targeted repair.

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Research

JoVE EoE - Viral Growth and Techniques

Anion Exchange Resin–Based Detection of Viruses from Bioaerosols

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2026

Source: Schaeffer, J. W., Chandler, et al. Detection of Viruses from Bioaerosols Using Anion Exchange Resin. J. Vis. Exp. (2018).This video demonstrates the detection of viruses from bioaerosols using an anion exchange resin. A liquid impinger containing the resin is used to capture viruses from the air. The resin is collected and treated with a virus lysis buffer containing carrier RNA. The lysate is transferred to a microcentrifuge tube for viral RNA isolation, followed by qRT-PCR to amplify...

Acrylic Resin Molding Based Head Fixation Technique in Rodents

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Cited by 4 •

2016

Traditional head fixation techniques have used metallic frames attached on the skull as an interface for head fixation apparatus. This protocol demonstrates a frameless, acrylic resin molding based head fixation technique for behavioral tasks in rodents.

Clear Resin Casting of Arthropods for Use in Education, Outreach, and Research

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2026

Here we show key steps in the process of creating high-quality, resin-embedded arthropods for educational instruction and outreach.

Research

JoVE Journal - Chemistry
Free Sample

Manufacturing of Three-dimensionally Microstructured Nanocomposites through Microfluidic Infiltration

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Cited by 4 •

2014

Three-dimensional (3D) microstructured composite beams are fabricated through the directed and localized infiltration of nanocomposites into 3D porous microfluidic networks. The flexibility of this manufacturing method enables the utilization of different thermosetting materials and nanofillers in order to achieve a variety of functional 3D reinforced nanocomposite macroscopic products.

Biliary System Resin Casting: A Technique for Analyzing 3D Architecture of Biliary System in Murine Model Using Radiopaque Resin Injection

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2025

This video describes the procedure for biliary system resin casting, for understanding 3D biliary architecture. This technique provides insights into the internal diameter and network connectivity of the biliary system, which could be used for liver regeneration analysis.

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