activity
20122021
collaborators

5 papers

physics.app-ph2021

Rapid measurement of the local pressure amplitude in microchannel acoustophoresis using motile cells

Minji Kim, Rune Barnkob, J. Mark Meacham

Acoustic microfluidics (or acoustofluidics) provides a non-contact and label-free means to manipulate and interrogate bioparticles. Owing to their biocompatibility and precision, a…

physics.flu-dyn2021

DefocusTracker: A modular toolbox for defocusing-based, single-camera, 3D particle tracking

Rune Barnkob, Massimiliano Rossi

The need for single-camera 3D particle tracking methods is growing, among others, due to the increasing focus in biomedical research often relying on single-plane microscopy imagin…

physics.flu-dyn2019

A fast and robust algorithm for General Defocusing Particle Tracking

Massimiliano Rossi, Rune Barnkob

The increasing use of microfluidics in industrial, biomedical, and clinical applications requires a more and more precise control of the microfluidic flows and suspended particles…

physics.flu-dyn2019

General Defocusing Particle Tracking: fundamentals and uncertainty assessment

Rune Barnkob, Massimiliano Rossi

General Defocusing Particle Tracking (GDPT) is a single-camera, three-dimensional particle tracking method that determines the particle depth positions from the defocusing patterns…

physics.flu-dyn2012

Diving with microparticles in acoustic fields

Alvaro Marin, Massimiliano Rossi, Rune Barnkob +5

Sound can move particles. A good example of this phenomenon is the Chladni plate, in which an acoustic wave is induced in a metallic plate and particles migrate to the nodes of the…