Acoustically actuated sessile bubbles can be used as a tool to manipulate microparticles, vesicles, and cells. In this work, using acoustically actuated sessile semicylindrical microbubbles, we demonstrate experimentally that finite-sized microparticles undergo size-sensitive migration and trapping toward specific spatial positions in three dimensions with high reproducibility. The particle trajectories are successfully reproduced by passive advection of the particles in a steady three-dimensional streaming flow field augmented with volume exclusion from the confining boundaries. For different particle sizes, this volume exclusion mechanism leads to three regimes of qualitatively different migratory behavior, suggesting applications for sep...
International audienceBubbles confined between the parallel walls of microchannels experience an inc...
Steady streaming flow exited by oscillating bubbles is an intriguing tool for transport, mixing, sor...
Manipulation of cells, droplets, and particles via ultrasound within microfluidic chips is a rapidly...
When driven by an acoustic pressure field at ultrasound frequencies, microbubbles adsorbed at a soli...
This work seeks to characterize and model the size-dependent behaviour of microparticles in a bubble...
Liquid transport at small length scales plays an increasingly important role in many emerging and in...
Micro-bubble streaming flows represent a unique type of actuating mechanism for microfluidics and ha...
Oscillating microbubbles can be used as microscopic agents. Using external acoustic fields they are ...
International audiencePulsating bubbles have proved to be a versatile tool for trapping and sorting ...
The growing interest in microfluidics in the last two decades has resulted in new and exciting ways ...
Contactless manipulation of microparticles using acoustic waves holds promise for applications rangi...
Microfluidics typically uses channels to transport small objects by actuation forces such as an appl...
Concentration and separation of particles and biological specimens are fundamental functions of micr...
The necessity of micromanipulation to separate, focus and transport discrete objects on a microscopi...
International audienceThree-dimensional harmless contactless manipulation and assembly of micro-obje...
International audienceBubbles confined between the parallel walls of microchannels experience an inc...
Steady streaming flow exited by oscillating bubbles is an intriguing tool for transport, mixing, sor...
Manipulation of cells, droplets, and particles via ultrasound within microfluidic chips is a rapidly...
When driven by an acoustic pressure field at ultrasound frequencies, microbubbles adsorbed at a soli...
This work seeks to characterize and model the size-dependent behaviour of microparticles in a bubble...
Liquid transport at small length scales plays an increasingly important role in many emerging and in...
Micro-bubble streaming flows represent a unique type of actuating mechanism for microfluidics and ha...
Oscillating microbubbles can be used as microscopic agents. Using external acoustic fields they are ...
International audiencePulsating bubbles have proved to be a versatile tool for trapping and sorting ...
The growing interest in microfluidics in the last two decades has resulted in new and exciting ways ...
Contactless manipulation of microparticles using acoustic waves holds promise for applications rangi...
Microfluidics typically uses channels to transport small objects by actuation forces such as an appl...
Concentration and separation of particles and biological specimens are fundamental functions of micr...
The necessity of micromanipulation to separate, focus and transport discrete objects on a microscopi...
International audienceThree-dimensional harmless contactless manipulation and assembly of micro-obje...
International audienceBubbles confined between the parallel walls of microchannels experience an inc...
Steady streaming flow exited by oscillating bubbles is an intriguing tool for transport, mixing, sor...
Manipulation of cells, droplets, and particles via ultrasound within microfluidic chips is a rapidly...