A microfluidic platform for magnetic bead translocation is introduced, consisting of microfabricated magnetic devices. Each magnetic device was constructed of embedded actuation microcoil array in various designs, which enable efficient magnetic beads and magnetic bead-labeled cell translocation in different patterns and step sizes. The translocation of magnetic beads and magnetic bead-labeled cells was demonstrated in three motion modes: transportation, oscillation, and convergence and divergence. The trapping and translocation efficiencies were measured and analyzed
International audienceThe manipulation of magnetically labeled bio-objects of nano or micrometer siz...
The detection of single molecules in magnetic microbead microwell array formats revolutionized the d...
The detection of single molecules in magnetic microbead microwell array formats revolutionized the d...
Magnetic beads play an important role in the miniaturization of clinical diagnostics systems. In lab...
Controlled transport of biological cells in biomedical applications such as sorting, cell sequencing...
Many scientists and engineers are turning to lab-on-a-chip systems for faster and cheaper analysis o...
Single-cell analysis is an emerging discipline that has shown a transformative impact in cell biolog...
Directed transport of biological species across the surface of a substrate is essential for realizin...
We present an original concept of manipulation of magnetic microbeads in a microchannel. It is based...
Magnetic beads play an important role in the miniaturization of clinical diagnostics systems. In lab...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
The remarkable advantages micro-chip platforms offer over cumbersome, time-consuming equipment curre...
This work presents a novel microsystem utilizing an array of rotating magnetic beads inside a microf...
For such biomedical applications as single cell manipulation and targeted delivery of chemicals, it ...
AbstractA platform of discrete microscopic magnetic elements patterned on a surface offers dynamic c...
International audienceThe manipulation of magnetically labeled bio-objects of nano or micrometer siz...
The detection of single molecules in magnetic microbead microwell array formats revolutionized the d...
The detection of single molecules in magnetic microbead microwell array formats revolutionized the d...
Magnetic beads play an important role in the miniaturization of clinical diagnostics systems. In lab...
Controlled transport of biological cells in biomedical applications such as sorting, cell sequencing...
Many scientists and engineers are turning to lab-on-a-chip systems for faster and cheaper analysis o...
Single-cell analysis is an emerging discipline that has shown a transformative impact in cell biolog...
Directed transport of biological species across the surface of a substrate is essential for realizin...
We present an original concept of manipulation of magnetic microbeads in a microchannel. It is based...
Magnetic beads play an important role in the miniaturization of clinical diagnostics systems. In lab...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
The remarkable advantages micro-chip platforms offer over cumbersome, time-consuming equipment curre...
This work presents a novel microsystem utilizing an array of rotating magnetic beads inside a microf...
For such biomedical applications as single cell manipulation and targeted delivery of chemicals, it ...
AbstractA platform of discrete microscopic magnetic elements patterned on a surface offers dynamic c...
International audienceThe manipulation of magnetically labeled bio-objects of nano or micrometer siz...
The detection of single molecules in magnetic microbead microwell array formats revolutionized the d...
The detection of single molecules in magnetic microbead microwell array formats revolutionized the d...