This paper presents a continuous-flow cell screening device to isolate and separate microalgae cells (Chlamydomonas reinhardtii) based on lipid content using high frequency (50 MHz) dielectrophoresis. This device enables screening of microalgae due to the balance between lateral DEP forces relative to hydrodynamic forces. Positive DEP force along with amplitude-modulated electric field exerted on the cells flowing over the planar interdigitated electrodes, manipulated low-lipid cell trajectories in a zigzag pattern. Theoretical modelling confirmed cell trajectories during sorting. Separation quantification and sensitivity analysis were conducted with time-course experiments and collected samples were analysed by flow cytometry. Experimental...
In this contribution we present a microfluidic chip for the continuous and label-free separation of ...
The study presents a dielectrophoretic cell separation method via three-dimensional (3D) nonuniform ...
Microalgae represent the most promising new source of biomass for the world's growing demands. Howev...
This paper presents a continuous-flow cell screening device to isolate and separate microalgae cells...
The primary research goal of this dissertation was to examine high-frequency (20-80 MHz) dielectroph...
In order to advance the algae biofuel industry, we are constructing a dielectrophoretic, single-cell...
Microalgae constitute an abundant source of poly-unsaturated fatty acids which are applied in variou...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Ca...
In this study, we carried out a heterogeneous cytoplasmic lipid content screening of Neochloris oleo...
In this study, we carried out a heterogeneous cytoplasmic lipid content screening of Neochloris oleo...
This thesis reports on the integration of continuous-flow cell separation method for lab-on-a-chip a...
There is great interest in highly sensitive separation methods capable of quickly isolating a partic...
Microalgae biotechnology has a high potential for sustainable bioproduction of diverse high-value bi...
This paper presents a microfluidic radiofrequency device operating at a few hundred MHz, which is ab...
International audienceThanks to their high fatty acids content when cultivated in stress conditions ...
In this contribution we present a microfluidic chip for the continuous and label-free separation of ...
The study presents a dielectrophoretic cell separation method via three-dimensional (3D) nonuniform ...
Microalgae represent the most promising new source of biomass for the world's growing demands. Howev...
This paper presents a continuous-flow cell screening device to isolate and separate microalgae cells...
The primary research goal of this dissertation was to examine high-frequency (20-80 MHz) dielectroph...
In order to advance the algae biofuel industry, we are constructing a dielectrophoretic, single-cell...
Microalgae constitute an abundant source of poly-unsaturated fatty acids which are applied in variou...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Ca...
In this study, we carried out a heterogeneous cytoplasmic lipid content screening of Neochloris oleo...
In this study, we carried out a heterogeneous cytoplasmic lipid content screening of Neochloris oleo...
This thesis reports on the integration of continuous-flow cell separation method for lab-on-a-chip a...
There is great interest in highly sensitive separation methods capable of quickly isolating a partic...
Microalgae biotechnology has a high potential for sustainable bioproduction of diverse high-value bi...
This paper presents a microfluidic radiofrequency device operating at a few hundred MHz, which is ab...
International audienceThanks to their high fatty acids content when cultivated in stress conditions ...
In this contribution we present a microfluidic chip for the continuous and label-free separation of ...
The study presents a dielectrophoretic cell separation method via three-dimensional (3D) nonuniform ...
Microalgae represent the most promising new source of biomass for the world's growing demands. Howev...