Microsphere Displacement

Microsphere displacement is the movement of microscopic spherical particles from their original positions, a measurable phenomenon used to study forces, fluid motion, and transport in medical systems. Displacement occurs when microspheres respond to surrounding flow, pressure gradients, diffusion, or interactions with cells and tissues, and researchers can quantify it through imaging and particle-tracking methods. In medicine, these measurements help characterize microvascular perfusion, tissue mechanics, drug-carrier behavior, and transport through biological barriers. Because microspheres can be engineered with defined sizes and surface properties, their motion provides a practical model for investigating delivery efficiency, circulation, and localized treatment strategies.

Microsphere Displacement - Related Videos

Research

JoVE Journal - Engineering

Fabrication of Polymer Microspheres for Optical Resonator and Laser Applications

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Cited by 3 •

2017

Protocols for the synthesis of microspheres from polymers, the manipulation of microspheres, and micro-photoluminescence measurements are presented.

Microsphere Polymerase Chain Reaction to Amplify Single-Stranded DNA

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2025

This video describes the technique of amplifying single-stranded DNA using oligonucleotide-coated polymer microspheres in a single-tube reaction. This process yields pure single-stranded DNA, which can be further used for DNA sequencing and microarray analysis.

Multiplexed Quantitative Bacterial Detection using Dye-Labeled Magnetic Microspheres

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2025

Source:Rhea Kang1, Gabby Mora1, Sherry Dunbar11Luminex, A DiaSorin Company, Austin.This video demonstrates multiplexed quantitative bacterial detection employing carboxylated magnetic polystyrene microspheres dyed into distinct sets. The procedure encompasses the formation of bead-bacteria complexes, magnetic separation, and flow-based analysis, enabling precise and simultaneous quantification of multiple bacteria in the same reaction well.

Electrospinning Growth Factor Releasing Microspheres into Fibrous Scaffolds

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Cited by 10 •

2014

This protocol combines electrospinning and microspheres to develop tissue engineered scaffolds to direct neurons. Nerve growth factor was encapsulated within PLGA microspheres and electrospun into Hyaluronic Acid (HA) fibrous scaffolds. The protein bioactivity was tested by seeding the scaffolds with primary chick Dorsal Root Ganglia and culturing for 4-6 days.

Education

JoVE Core - Physics

Position and Displacement

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2023

The position of an object defines its location relative to a convenient frame of reference at any particular time. A frame of reference is an arbitrary set of axes from which the position and motion of an object are described. Earth is often used as a frame of reference, and we often describe the position of an object as it relates to stationary objects on Earth. For example, a rocket launch could be described in terms of the position of the rocket with respect to Earth as a whole. On the other...

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