a The high-throughput selection of individual droplets is an essential function in droplet-based microfluidics. Fluorescence-activated droplet sorting is achieved using electric fields triggered at rates up to 30 kHz, providing the ultra-high throughput relevant in applications where large libraries of compounds or cells must be analyzed. To achieve such sorting frequencies, electrodes have to create an electric field distribution that generates maximal actuating forces on the droplet while limiting the induced droplet deformation and avoid disintegration. We propose a metric characterizing the performance of an electrode design relative to the theoretical optimum and analyze existing devices using full 3D simulations of the electric fields...
Contains the design files and source data linked to the following publication in Cell Reports Method...
Droplet microfluidics has become a powerful tool in precision medicine, green biotechnology, and cel...
Abstract This letter reports two novel electrode design considerations to satisfy two very important...
International audiencea The high-throughput selection of individual droplets is an essential functio...
Both basic research and biological design require high throughput screening to parse through the ma...
International audienceFluorescence-activated droplet sorting (FADS) is one of the most important fea...
Microfluidic droplet sorting allows selection of subpopulations of cells, nucleic acids, and biomole...
This project sought to design, implement and test a high-throughput fluorescence measurement system ...
Often in biology, rare individuals within a population dominate the population’s overall behavior, a...
Fluorescence-activated droplet sorting (FADS) has become a widely used technique for high-throughput...
Dielectrophoresis (DEP) is a powerful tool for label-free sorting of cells, even those with subtle d...
Motivated by the desire to analyze individual cells, the objective of this research is the design, f...
3D microelectrodes are one-step fabricated into a microfluidic droplet separator by filling conducti...
Digital microfluidics (DMF) system or device can be used as a significant and useful tool for chemic...
The actuation method using electric force as a driving force is utilized widely in droplet-based mic...
Contains the design files and source data linked to the following publication in Cell Reports Method...
Droplet microfluidics has become a powerful tool in precision medicine, green biotechnology, and cel...
Abstract This letter reports two novel electrode design considerations to satisfy two very important...
International audiencea The high-throughput selection of individual droplets is an essential functio...
Both basic research and biological design require high throughput screening to parse through the ma...
International audienceFluorescence-activated droplet sorting (FADS) is one of the most important fea...
Microfluidic droplet sorting allows selection of subpopulations of cells, nucleic acids, and biomole...
This project sought to design, implement and test a high-throughput fluorescence measurement system ...
Often in biology, rare individuals within a population dominate the population’s overall behavior, a...
Fluorescence-activated droplet sorting (FADS) has become a widely used technique for high-throughput...
Dielectrophoresis (DEP) is a powerful tool for label-free sorting of cells, even those with subtle d...
Motivated by the desire to analyze individual cells, the objective of this research is the design, f...
3D microelectrodes are one-step fabricated into a microfluidic droplet separator by filling conducti...
Digital microfluidics (DMF) system or device can be used as a significant and useful tool for chemic...
The actuation method using electric force as a driving force is utilized widely in droplet-based mic...
Contains the design files and source data linked to the following publication in Cell Reports Method...
Droplet microfluidics has become a powerful tool in precision medicine, green biotechnology, and cel...
Abstract This letter reports two novel electrode design considerations to satisfy two very important...