Microfluidic Technology

Microfluidic technology is the engineering of systems that manipulate very small volumes of fluids, often within channels measuring micrometers, to perform controlled chemical, biological, or physical operations. At this scale, fluid motion is typically laminar, so streams flow in parallel and mix mainly through diffusion; precise channel geometry, pressure, and surface properties regulate transport and reactions. Microfluidic devices can integrate fluid handling, separation, mixing, and detection on compact platforms, reducing sample and reagent use while improving control and analysis speed. Their applications include biomedical diagnostics, chemical synthesis, environmental monitoring, and lab-on-a-chip systems, supporting portable instruments and automated research workflows.

Microfluidic Technology - Related Videos

Research

JoVE Journal - Biology

Studies of Bacterial Chemotaxis Using Microfluidics - Interview

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Cited by 1 •

2007

A Modular Microfluidic Technology for Systematic Studies of Colloidal Semiconductor Nanocrystals

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Cited by 4 •

2018

Detailed herein are the operation and assembly protocols of a modular microfluidic screening platform for the systematic characterization of colloidal semiconductor nanocrystal syntheses. Through fully adjustable system arrangements, highly efficient spectra collection may be carried out across 4 orders of magnitude reaction time scales within a mass transfer-controlled sampling space.

Fabricating Highly Open Porous Microspheres (HOPMs) via Microfluidic Technology

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2022

The present protocol describes the fabrication of poly(lactic-co-glycolic acid)-based highly open porous microspheres (HOPMs) via the single-emulsion formulation based facile microfluidic technology. These microspheres have potential applications in tissue engineering and drug screening.

Reduced-gravity Environment Hardware Demonstrations of a Prototype Miniaturized Flow Cytometer and Companion Microfluidic Mixing Technology

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Cited by 9 •

2014

Spaceflight blood diagnostics need innovation. Few demonstrations have been published illustrating in-flight, reduced-gravity health diagnostic technology. Here we present a method for construction and operation of a parabolic flight test rig for a prototype point-of-care flow-cytometry design, with components and preparation strategies adaptable to other setups.

Applying Microfluidics to Electrophysiology

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Cited by 1 •

2007

Microfluidics can be integrated with standard electrophysiology techniques to allow new experimental modalities. Specifically, the motivation for the ...

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