Whilst laboratory-on-chip cell separation systems using dielectrophoresis are increasingly reported in the literature, many systems are afflicted by factors which impede "real world" performance, chief among these being cell loss (in dead spaces, attached to glass and tubing surfaces, or sedimentation from flow), and designs with large channel height-to-width ratios (large channel widths, small channel heights) that make the systems difficult to interface with other microfluidic systems. In this paper, we present a scalable structure based on 3D wells with approximately unity height-to-width ratios (based on tubes with electrodes on the sides), which is capable of enriching yeast cell populations whilst ensuring that up to 94.3% of cells pr...
This article presents the numerical and experimental analysis of a dielectrophoretic-activated cell ...
Budding yeast cells are quick and easy to grow and represent a versatile model of eukaryotic cells f...
Dielectrophoresis (DEP) is a versatile technique for the solution of difficult (bio-)particle separa...
Whilst laboratory-on-chip cell separation systems using dielectrophoresis are increasingly reported ...
A technique called dielectrophoresis (DEP) has been proved to be an effective method for the separat...
Microfluidic devices for dielectrophoretic cell separation are typically designed and constructed us...
This paper presents a dielectrophoretic system for the immobilization and separation of live and dea...
Separating live and dead cells is critical to the diagnosis of early stage diseases and to the effic...
Isolation and enrichment of cells from a diluted sample is necessary for different clinical applicat...
There is great interest in highly sensitive separation methods capable of quickly isolating a partic...
Here, we report on an enrichment protocol using carbon electrodedielectrophoresis to isolate and pur...
Dielectrophoresis (DEP) has proven an invaluable tool for the enrichment of populations of stem and ...
Dielectrophoresis (DEP) has proven an invaluable tool for the enrichment of populations of stem and ...
In this contribution we present a microfluidic chip for the continuous and label-free separation of ...
Currently, cell separation occurs almost exclusively by density gradient methods and by fluorescence...
This article presents the numerical and experimental analysis of a dielectrophoretic-activated cell ...
Budding yeast cells are quick and easy to grow and represent a versatile model of eukaryotic cells f...
Dielectrophoresis (DEP) is a versatile technique for the solution of difficult (bio-)particle separa...
Whilst laboratory-on-chip cell separation systems using dielectrophoresis are increasingly reported ...
A technique called dielectrophoresis (DEP) has been proved to be an effective method for the separat...
Microfluidic devices for dielectrophoretic cell separation are typically designed and constructed us...
This paper presents a dielectrophoretic system for the immobilization and separation of live and dea...
Separating live and dead cells is critical to the diagnosis of early stage diseases and to the effic...
Isolation and enrichment of cells from a diluted sample is necessary for different clinical applicat...
There is great interest in highly sensitive separation methods capable of quickly isolating a partic...
Here, we report on an enrichment protocol using carbon electrodedielectrophoresis to isolate and pur...
Dielectrophoresis (DEP) has proven an invaluable tool for the enrichment of populations of stem and ...
Dielectrophoresis (DEP) has proven an invaluable tool for the enrichment of populations of stem and ...
In this contribution we present a microfluidic chip for the continuous and label-free separation of ...
Currently, cell separation occurs almost exclusively by density gradient methods and by fluorescence...
This article presents the numerical and experimental analysis of a dielectrophoretic-activated cell ...
Budding yeast cells are quick and easy to grow and represent a versatile model of eukaryotic cells f...
Dielectrophoresis (DEP) is a versatile technique for the solution of difficult (bio-)particle separa...