Improved sample preparation has the potential to address unmet needs for fast turnaroundsepsis tests. In this work, we report elasto-inertial based rapid bacteria separation from diluted blood at high separation efficiency. In viscoelastic flows, we demonstrate novel findings where blood cells prepositioned at the outer wall entering a spiral device remain fullyfocused throughout the channel length while smaller bacteria migrate to the opposite wall.Initially, using microparticles, we show that particles above a certain size cut-off remainfully focused at the outer wall while smaller particles differentially migrate toward the inner wall. We demonstrate particle separation at 1 μm resolution at a total throughput of1 mL/min. For blood-based...
Implementation of viscoelasticity-based particle migration techniques has attracted significant inte...
Microfluidics promises to re-shape the current health-care system by transferring diagnostic tools f...
Inertial focusing is a promising microfluidic technology for concentration and separation of particl...
Improved sample preparation has the potential to address unmet needs for fast turnaroundsepsis tests...
Background: Bloodstream infections (BSI) remain a major challenge with high mortality rate, with an ...
Background: Bloodstream infections (BSI) remain a major challenge with high mortality rate, with an ...
We developed a new approach to separate bacteria from human blood cells based on soft inertial force...
Early detection of pathogenic microorganisms is pivotal to diagnosis and prevention of health and sa...
Early detection of pathogenic microorganisms is pivotal to diagnosis and prevention of health and sa...
Early detection of pathogenic microorganisms is pivotal to diagnosis and prevention of health and sa...
Early detection of pathogenic microorganisms is pivotal to diagnosis and prevention of health and sa...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
Cell separation is one of the key limiting factors for precise analysis of non-axenic microbial lab ...
Cell separation is one of the key limiting factors for precise analysis of non-axenic microbial lab ...
Cell separation is one of the key limiting factors for precise analysis of non-axenic microbial lab ...
Implementation of viscoelasticity-based particle migration techniques has attracted significant inte...
Microfluidics promises to re-shape the current health-care system by transferring diagnostic tools f...
Inertial focusing is a promising microfluidic technology for concentration and separation of particl...
Improved sample preparation has the potential to address unmet needs for fast turnaroundsepsis tests...
Background: Bloodstream infections (BSI) remain a major challenge with high mortality rate, with an ...
Background: Bloodstream infections (BSI) remain a major challenge with high mortality rate, with an ...
We developed a new approach to separate bacteria from human blood cells based on soft inertial force...
Early detection of pathogenic microorganisms is pivotal to diagnosis and prevention of health and sa...
Early detection of pathogenic microorganisms is pivotal to diagnosis and prevention of health and sa...
Early detection of pathogenic microorganisms is pivotal to diagnosis and prevention of health and sa...
Early detection of pathogenic microorganisms is pivotal to diagnosis and prevention of health and sa...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
Cell separation is one of the key limiting factors for precise analysis of non-axenic microbial lab ...
Cell separation is one of the key limiting factors for precise analysis of non-axenic microbial lab ...
Cell separation is one of the key limiting factors for precise analysis of non-axenic microbial lab ...
Implementation of viscoelasticity-based particle migration techniques has attracted significant inte...
Microfluidics promises to re-shape the current health-care system by transferring diagnostic tools f...
Inertial focusing is a promising microfluidic technology for concentration and separation of particl...