Continuous plasma separation will be greatly helpful for dynamic metabolite monitoring in kinetics research and drug development. In this work, we proposed a continuous on-chip plasma separation method based on the natural aggregating and sedimentation behavior of red blood cells at low shear rate. In this approach, a glass capillary was first used to realize quick and obvious delamination of blood cells from plasma. A novel “dual-elbow” connector was designed to change the direction of delamination. The blood was finally separated by laminar flow and bifurcation on the microchip. Results demonstrated that the present device can efficiently and stably separate plasma from blood in a continuous means, e.g., in a 4 h separation we did not obs...
International audienceThis document presents a multi-step microfluidic system designed for passive a...
The ability to efficiently fractionate blood into its individual components is crucial for therapeut...
International audienceThis document presents a multi-step microfluidic system designed for passive a...
Continuous plasma separation will be greatly helpful for dynamic metabolite monitoring in kinetics r...
Miniaturized on-chip blood separators have a great value for point-of-care diagnosis. In our work, a...
Microfluidics has developed as a set of powerful tools that have greatly advanced in some areas of b...
Separating plasma from blood using a microfluidic platform is favored and beneficial in point-of-car...
In this research work, we present a simple and efficient passive microfluidic device for plasma sepa...
In recent years, microfluidic chips have proven ideal tools for biochemical analysis, which, however...
Due to the expansion of point-of-care devices, proposing a convenient and efficient method for blood...
80 p.A lab-on-a-chip (LOC) device is currently being developed at the Institute of Microelectronics ...
Blood and blood products are critical components of health care. Blood components perform distinct f...
Blood and blood products are critical components of health care. Blood components perform distinct f...
Blood and blood products are critical components of health care. Blood components perform distinct f...
Blood plasma is an important assay for many diagnostic tests typically performed in clinical laborat...
International audienceThis document presents a multi-step microfluidic system designed for passive a...
The ability to efficiently fractionate blood into its individual components is crucial for therapeut...
International audienceThis document presents a multi-step microfluidic system designed for passive a...
Continuous plasma separation will be greatly helpful for dynamic metabolite monitoring in kinetics r...
Miniaturized on-chip blood separators have a great value for point-of-care diagnosis. In our work, a...
Microfluidics has developed as a set of powerful tools that have greatly advanced in some areas of b...
Separating plasma from blood using a microfluidic platform is favored and beneficial in point-of-car...
In this research work, we present a simple and efficient passive microfluidic device for plasma sepa...
In recent years, microfluidic chips have proven ideal tools for biochemical analysis, which, however...
Due to the expansion of point-of-care devices, proposing a convenient and efficient method for blood...
80 p.A lab-on-a-chip (LOC) device is currently being developed at the Institute of Microelectronics ...
Blood and blood products are critical components of health care. Blood components perform distinct f...
Blood and blood products are critical components of health care. Blood components perform distinct f...
Blood and blood products are critical components of health care. Blood components perform distinct f...
Blood plasma is an important assay for many diagnostic tests typically performed in clinical laborat...
International audienceThis document presents a multi-step microfluidic system designed for passive a...
The ability to efficiently fractionate blood into its individual components is crucial for therapeut...
International audienceThis document presents a multi-step microfluidic system designed for passive a...