AbstractWhen aiming a complete microfluidic analysis system for human blood tests the blood plasma separation should be preferably also integrated in the device. The sensitivity of the analysis is significantly affected by the sample quality, so in this work the efficiency of the Zweifach-Fung effect based microfluidic separation systems was characterized. The microstructures were fabricated by simple replication in polydimethylsilixane applying SU-8 photoresist master beside extensive variation of the geometric parameters
Blood tests provide crucial diagnostic information regarding several diseases. A key factor that aff...
The diagnosis of several diseases can be performed by analyzing the blood plasma of a patient. Despi...
Microfluidic (also known as lab-on-a-chip) devices offer the capability of manipulating very low vol...
AbstractWhen aiming a complete microfluidic analysis system for human blood tests the blood plasma s...
In this research work, we present a simple and efficient passive microfluidic device for plasma sepa...
A microfluidic chip used in separation of plasma from whole blood, which combines, the Zweifach-Fung...
Microfluidics has developed as a set of powerful tools that have greatly advanced in some areas of b...
Blood plasma is an important assay for many diagnostic tests typically performed in clinical laborat...
In this work, design and experiments on various blood plasma microdevices based on hydrodynamic flow...
Point of care diagnostics gain importance with regard to novel diagnostic techniques. Future applica...
Microfluidics is a design and fabrication of system which involve in manipulating small amount of li...
In recent years, microfluidic chips have proven ideal tools for biochemical analysis, which, however...
Separating plasma from blood using a microfluidic platform is favored and beneficial in point-of-car...
Blood is an important element in the human body. Blood test is the most commonly performed medical t...
Blood tests provide crucial diagnostic information regarding several diseases. A key factor that aff...
Blood tests provide crucial diagnostic information regarding several diseases. A key factor that aff...
The diagnosis of several diseases can be performed by analyzing the blood plasma of a patient. Despi...
Microfluidic (also known as lab-on-a-chip) devices offer the capability of manipulating very low vol...
AbstractWhen aiming a complete microfluidic analysis system for human blood tests the blood plasma s...
In this research work, we present a simple and efficient passive microfluidic device for plasma sepa...
A microfluidic chip used in separation of plasma from whole blood, which combines, the Zweifach-Fung...
Microfluidics has developed as a set of powerful tools that have greatly advanced in some areas of b...
Blood plasma is an important assay for many diagnostic tests typically performed in clinical laborat...
In this work, design and experiments on various blood plasma microdevices based on hydrodynamic flow...
Point of care diagnostics gain importance with regard to novel diagnostic techniques. Future applica...
Microfluidics is a design and fabrication of system which involve in manipulating small amount of li...
In recent years, microfluidic chips have proven ideal tools for biochemical analysis, which, however...
Separating plasma from blood using a microfluidic platform is favored and beneficial in point-of-car...
Blood is an important element in the human body. Blood test is the most commonly performed medical t...
Blood tests provide crucial diagnostic information regarding several diseases. A key factor that aff...
Blood tests provide crucial diagnostic information regarding several diseases. A key factor that aff...
The diagnosis of several diseases can be performed by analyzing the blood plasma of a patient. Despi...
Microfluidic (also known as lab-on-a-chip) devices offer the capability of manipulating very low vol...