We present an integrated microfluidic system for performing isolation and concentration of Phytophthora ramorum pathogens using a chip whose working principle is based on inertial lateral migration in curving flows. The chip was fabricated from multiple layers of thermoplastic polymers and features an embedded spiral separation channel along with peristaltic microvalves for fluidic operation and process control. A pumping system paired with a fully programmable pressure manifold is used to boost concentration levels by recirculating the sample liquid multiple times through the separation chip, making it possible to reduce sample volumes from 10 to 1 mL or less. The system was calibrated using fluorescent polymer particles with a nominal dia...
Systemic Candida infections remain a leading cause of nosocomial infections in the United States and...
Detecting waterborne pathogens is a challenging task because of their low concentration in water and...
AbstractDetecting waterborne pathogens is a challenging task because of their low concentration in w...
Harmful algal blooms (HABs) are a recurring phenomenon along all continents, posing a global threat,...
Detecting pathogenic bacteria in food or other biological samples with lab-on-a-chip (LOC) devices r...
We report on an inertial focussing based microfluidics technology for concentrating waterborne proto...
Microalgae represent the most promising new source of biomass for the world's growing demands. Howev...
We have designed, built, and evaluated a microfluidic device that uses deterministic lateral displac...
The increasing presence of micro- and nanoplastic in water is threatening human lives, animals, and ...
A cell-in-droplet encapsulation using Dean flow in a spiral microfluidic device was applied to separ...
Severe epidemics in North America due to consumption of polluted water containing pathogens such as ...
We have successfully demonstrated selective trapping, concentration, and release of various biologic...
Microalgae are a promising source of bioactive ingredients for the food, pharmaceutical and cosmetic...
We developed a new approach to separate bacteria from human blood cells based on soft inertial force...
"IEEE Portuguese Meeting on Bioengineering, e-ISSN 2771-487X"Phytoplankton are microscopic marine al...
Systemic Candida infections remain a leading cause of nosocomial infections in the United States and...
Detecting waterborne pathogens is a challenging task because of their low concentration in water and...
AbstractDetecting waterborne pathogens is a challenging task because of their low concentration in w...
Harmful algal blooms (HABs) are a recurring phenomenon along all continents, posing a global threat,...
Detecting pathogenic bacteria in food or other biological samples with lab-on-a-chip (LOC) devices r...
We report on an inertial focussing based microfluidics technology for concentrating waterborne proto...
Microalgae represent the most promising new source of biomass for the world's growing demands. Howev...
We have designed, built, and evaluated a microfluidic device that uses deterministic lateral displac...
The increasing presence of micro- and nanoplastic in water is threatening human lives, animals, and ...
A cell-in-droplet encapsulation using Dean flow in a spiral microfluidic device was applied to separ...
Severe epidemics in North America due to consumption of polluted water containing pathogens such as ...
We have successfully demonstrated selective trapping, concentration, and release of various biologic...
Microalgae are a promising source of bioactive ingredients for the food, pharmaceutical and cosmetic...
We developed a new approach to separate bacteria from human blood cells based on soft inertial force...
"IEEE Portuguese Meeting on Bioengineering, e-ISSN 2771-487X"Phytoplankton are microscopic marine al...
Systemic Candida infections remain a leading cause of nosocomial infections in the United States and...
Detecting waterborne pathogens is a challenging task because of their low concentration in water and...
AbstractDetecting waterborne pathogens is a challenging task because of their low concentration in w...