This paper presents work on the development of a microfluidic device using super-paramagnetic beads for sampling and mixing. The beads are manipulated via an external rotating permanent magnet in a microfluidic channel. Efficient mixing is achieved in a short distance with this method. Modeling shows the variables which influence the mixing are flow rate, bead rotation speed and the bead number density. Displacement of the bead relative the rotating magnetic field sets an upper limit on the bead rotation speed due to viscous drag. Future work will examine optimization of this system for capture of pathogens from a complex mixture
Magnetic micro-beads can facilitate many functions in lab-on-a-chip systems, such as bio-chemical la...
We describe a microfluidic system that uses a magnetic field to sort paramagnetic beads by deflectin...
Magnetic micro-beads can facilitate many functions in lab-on-a-chip systems, such as bio-chemical la...
This work presents a novel microsystem utilizing an array of rotating magnetic beads inside a microf...
We present an original concept of manipulation of magnetic microbeads in a microchannel. It is based...
Magnetic microbeads have been widely used for the capturing of biomarkers, as well as for microfluid...
Recent global events have distinctly demonstrated the need for fast diagnostic analysis of targets i...
Microfluidic mixing becomes a necessity when thorough sample homogenization is required in small vol...
Microfluidic mixing becomes a necessity when thorough sample homogenization is required in small vol...
The aim of this works was the design and construction of a device that will be used for magnetizable...
Magnetic microbeads have been widely used for the capturing of biomarkers, as well as for microfluid...
Magnetic microbeads have been widely used for the capturing of biomarkers, as well as for microfluid...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 2]. In molecular biology, separation and sampl...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 2]. In molecular biology, separation and sampl...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 1]. In molecular biology, separation and sampl...
Magnetic micro-beads can facilitate many functions in lab-on-a-chip systems, such as bio-chemical la...
We describe a microfluidic system that uses a magnetic field to sort paramagnetic beads by deflectin...
Magnetic micro-beads can facilitate many functions in lab-on-a-chip systems, such as bio-chemical la...
This work presents a novel microsystem utilizing an array of rotating magnetic beads inside a microf...
We present an original concept of manipulation of magnetic microbeads in a microchannel. It is based...
Magnetic microbeads have been widely used for the capturing of biomarkers, as well as for microfluid...
Recent global events have distinctly demonstrated the need for fast diagnostic analysis of targets i...
Microfluidic mixing becomes a necessity when thorough sample homogenization is required in small vol...
Microfluidic mixing becomes a necessity when thorough sample homogenization is required in small vol...
The aim of this works was the design and construction of a device that will be used for magnetizable...
Magnetic microbeads have been widely used for the capturing of biomarkers, as well as for microfluid...
Magnetic microbeads have been widely used for the capturing of biomarkers, as well as for microfluid...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 2]. In molecular biology, separation and sampl...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 2]. In molecular biology, separation and sampl...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 1]. In molecular biology, separation and sampl...
Magnetic micro-beads can facilitate many functions in lab-on-a-chip systems, such as bio-chemical la...
We describe a microfluidic system that uses a magnetic field to sort paramagnetic beads by deflectin...
Magnetic micro-beads can facilitate many functions in lab-on-a-chip systems, such as bio-chemical la...