Microfluidic techniques for cell manipulation have been constantly developed and integrated into small chips for high-performance bioassays. However, the drawbacks of each of the techniques often hindered their further advancement and their wide use in biotechnology. To overcome this difficulty, an examination and understanding of various aspects of the developed manipulation techniques are required. In this review, we provide the details of primary microfluidic techniques that have received much attention for bioassays. First, we introduce the manipulation techniques using a sole driving source, i.e., dielectrophoresis, electrophoresis, optical tweezers, magnetophoresis, and acoustophoresis. Next, we present rapid electrokinetic patterning...
Microfluidics is ushering a new era in biological analysis and point-of-care diagnostics. By perform...
Abstract Dielectrophoresis (DEP) has become a promising technique to separate and identify cells and...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
Microfluidic techniques for cell manipulation have been constantly developed and integrated into sma...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
MEMS microfluidic systems are becoming increasingly popular as a way to integrate sample preparation...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...
Microfluidics and lab-on-a-chip technology offers unique advantages for the next generation devices ...
The objective of this research is to study the enhancement of the mixing effect and the manipulation...
Abstract—Electrokinetics is the study of the motion of bulk fluids or selected particles embedded in...
The rapid electrokinetic patterning (REP) technique developed recently is a hybrid opto-electrokinet...
Particle manipulation based on dielectrophoresis (DEP) can be a versatile and useful tool in lab-on-...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
We present a feasible dielectrophoresis (DEP) approach for rapid patterning of microparticles on a r...
This communication first demonstrates bio-compatibility of a recently developed opto-electrokinetic ...
Microfluidics is ushering a new era in biological analysis and point-of-care diagnostics. By perform...
Abstract Dielectrophoresis (DEP) has become a promising technique to separate and identify cells and...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
Microfluidic techniques for cell manipulation have been constantly developed and integrated into sma...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
MEMS microfluidic systems are becoming increasingly popular as a way to integrate sample preparation...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...
Microfluidics and lab-on-a-chip technology offers unique advantages for the next generation devices ...
The objective of this research is to study the enhancement of the mixing effect and the manipulation...
Abstract—Electrokinetics is the study of the motion of bulk fluids or selected particles embedded in...
The rapid electrokinetic patterning (REP) technique developed recently is a hybrid opto-electrokinet...
Particle manipulation based on dielectrophoresis (DEP) can be a versatile and useful tool in lab-on-...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
We present a feasible dielectrophoresis (DEP) approach for rapid patterning of microparticles on a r...
This communication first demonstrates bio-compatibility of a recently developed opto-electrokinetic ...
Microfluidics is ushering a new era in biological analysis and point-of-care diagnostics. By perform...
Abstract Dielectrophoresis (DEP) has become a promising technique to separate and identify cells and...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...