Biomedical Micro Devices

Biomedical microdevices are miniaturized tools that perform biological measurement, analysis, or intervention in compact formats, enabling precise control of small samples and biological environments. They commonly combine microfluidic channels, microsensors, and engineered surfaces to transport fluids, capture cells or molecules, and convert chemical or physical changes into measurable signals. In biology, these devices support cell analysis, biomarker detection, drug screening, tissue studies, and point-of-care diagnostics. By reducing sample and reagent requirements while integrating multiple laboratory functions, biomedical microdevices can improve testing speed, portability, and experimental control, advancing both fundamental research and clinical applications.

Biomedical Micro Devices - Related Videos

Research

JoVE Journal - Engineering

Fabrication of Refractive-index-matched Devices for Biomedical Microfluidics

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Cited by 6 •

2018

This protocol describes the fabrication of microfluidic devices from MY133-V2000 to eliminate artifacts that often arise in microchannels due to the mismatching refractive indices between microchannel structures and an aqueous solution. This protocol uses an acrylic holder to compress the encapsulated device, improving adhesion both chemically and mechanically.

Dissolving Microneedle Array Patches Manufactured By Solvent Casting Technique and Essential Characterization of Microneedle-Based Biomedical Devices

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2026

The present work aims to serve as a practical guide enabling researchers to prepare their own DMAP devices using the solvent-casting method, also known as micromolding, and to perform basic characterization.

Protocol for Biofilm Streamer Formation in a Microfluidic Device with Micro-pillars

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Cited by 17 •

2014

Protocols for the study of biofilm formation in a microfluidic device that mimics porous media are discussed. The microfluidic device consists of an array of micro-pillars and biofilm formation by Pseudomonas fluorescens in this device is investigated.

An Integrated Micro-Device System for Coral Growth and Monitoring

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Cited by 1 •

2023

This protocol describes the development of a modular controllable micro-device system that can be applied for the long-term culturing and monitoring of sea corals.

Generation of Alginate Microspheres for Biomedical Applications

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Cited by 33 •

2012

In the following sections, we outline procedures for the preparation of alginate microspheres for use in biomedical applications. We specifically illustrate a technique for creating multilayered alginate microspheres for the dual purpose of cell and protein encapsulation as a potential treatment for type 1 diabetes.

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