Selective, precise, and high-throughput manipulation of individual superparamagnetic microparticles has profound applications in performing location-tailored in vitro biomedical studies. The current techniques for manipulation of microparticles allow only a single particle in the manipulation workspace, or simultaneous transportation of multiple microparticles in batches. In this work, a method based on a robotized electromagnetic needle for manipulation of individual superparamagnetic microparticles within a microparticle population is introduced. By automatically controlling the highly localized magnetic field of the needle, a single microparticle is selectively picked when its neighboring particle is few micrometers away. Supported by th...
Microscale robotics have numerous applications in engineering and the biomedical sciences, as the ma...
This paper reports a low-cost method of continuous size-dependent sorting of magnetic nanoparticles ...
2008 IEEE/RSJ International Conference on Intelligent Robots and Systems, Acropolis Convention Cente...
Selective, precise, and high-throughput manipulation of individual superparamagnetic microparticles ...
During the last few decades, a myriad of artificially built small-scale agents became able to emulat...
Selective and independent manipulation of microparticles is important for a wide range of applicatio...
Magnetic manipulation of particles at close vicinity is a challenging task. In this paper, we propos...
In this paper, we report a cooperative manipulation method for non-contact robotic electromagnetic n...
The control and manipulation of superparamagnetic nanoparticles (SP-MNP) is a significant challenge ...
AbstractManipulation of micron-size magnetic particles of the superparamagnetic type contributes sig...
Magnetic ratcheting cytometry is a promising approach to separate magnetically-labeled cells and mag...
Magnetic ratcheting cytometry is a promising approach to separate magnetically-labeled cells and mag...
We present a new approach to bioanalysis in microchannels, using superparamagnetic nanoparticles as ...
We investigate maneuvering superparamagnetic microparticles, or beads, in a remotely-controlled, aut...
Richard Feynman in his famous address “There’s plenty of room at the bottom” illuminated the potenti...
Microscale robotics have numerous applications in engineering and the biomedical sciences, as the ma...
This paper reports a low-cost method of continuous size-dependent sorting of magnetic nanoparticles ...
2008 IEEE/RSJ International Conference on Intelligent Robots and Systems, Acropolis Convention Cente...
Selective, precise, and high-throughput manipulation of individual superparamagnetic microparticles ...
During the last few decades, a myriad of artificially built small-scale agents became able to emulat...
Selective and independent manipulation of microparticles is important for a wide range of applicatio...
Magnetic manipulation of particles at close vicinity is a challenging task. In this paper, we propos...
In this paper, we report a cooperative manipulation method for non-contact robotic electromagnetic n...
The control and manipulation of superparamagnetic nanoparticles (SP-MNP) is a significant challenge ...
AbstractManipulation of micron-size magnetic particles of the superparamagnetic type contributes sig...
Magnetic ratcheting cytometry is a promising approach to separate magnetically-labeled cells and mag...
Magnetic ratcheting cytometry is a promising approach to separate magnetically-labeled cells and mag...
We present a new approach to bioanalysis in microchannels, using superparamagnetic nanoparticles as ...
We investigate maneuvering superparamagnetic microparticles, or beads, in a remotely-controlled, aut...
Richard Feynman in his famous address “There’s plenty of room at the bottom” illuminated the potenti...
Microscale robotics have numerous applications in engineering and the biomedical sciences, as the ma...
This paper reports a low-cost method of continuous size-dependent sorting of magnetic nanoparticles ...
2008 IEEE/RSJ International Conference on Intelligent Robots and Systems, Acropolis Convention Cente...