Selective and independent manipulation of microparticles is important for a wide range of applications. Compared to other physical principles, magnetic field is promising due to its ability to penetrate most materials and affects only magnetic objects. However, in most non-contact magnetic manipulation systems, all particles in the workspace are moved simultaneously. This paper reports an automatic single-source non-contact magnetic manipulation technique that can selectively extract individual magnetic particles from a population of similar particles and then independently manipulate the extracted particles. We use an electromagnetic needle to create a highly localized magnetic field to achieve the local addressability. The motion of singl...
Noncontact actuation, transmission and manipulation are key factors for compactness, high precision ...
We describe an on-chip system to control the actuation of micrometer- and nanometer-sized magnetic p...
We present the defined actuation of a single magnetic particle on a crossbar array chip. Two orthogo...
Selective and independent manipulation of microparticles is important for a wide range of applicatio...
During the last few decades, a myriad of artificially built small-scale agents became able to emulat...
In this paper, we report a cooperative manipulation method for non-contact robotic electromagnetic n...
Selective, precise, and high-throughput manipulation of individual superparamagnetic microparticles ...
Magnetic manipulation of particles at close vicinity is a challenging task. In this paper, we propos...
A method has been developed in this work for the manipulation of magnetic nanoparticles ...
International audienceThis work aims at increasing the velocity of micrometer scale particles contro...
Methods for the manipulation of single magnetic particles have become very interesting, in particula...
This dissertation is presented in two sections. The first section encompasses the con-trol of microp...
The simple, rapid magnetic manipulation of paramagnetic particles (PMPs) paired with the wide range ...
© 14CBMS. This manuscript reports the manipulation of single magnetic microparticles confined in a m...
We present techniques and methodologies for the manipulation of magnetic micro- and nanoparticles ('...
Noncontact actuation, transmission and manipulation are key factors for compactness, high precision ...
We describe an on-chip system to control the actuation of micrometer- and nanometer-sized magnetic p...
We present the defined actuation of a single magnetic particle on a crossbar array chip. Two orthogo...
Selective and independent manipulation of microparticles is important for a wide range of applicatio...
During the last few decades, a myriad of artificially built small-scale agents became able to emulat...
In this paper, we report a cooperative manipulation method for non-contact robotic electromagnetic n...
Selective, precise, and high-throughput manipulation of individual superparamagnetic microparticles ...
Magnetic manipulation of particles at close vicinity is a challenging task. In this paper, we propos...
A method has been developed in this work for the manipulation of magnetic nanoparticles ...
International audienceThis work aims at increasing the velocity of micrometer scale particles contro...
Methods for the manipulation of single magnetic particles have become very interesting, in particula...
This dissertation is presented in two sections. The first section encompasses the con-trol of microp...
The simple, rapid magnetic manipulation of paramagnetic particles (PMPs) paired with the wide range ...
© 14CBMS. This manuscript reports the manipulation of single magnetic microparticles confined in a m...
We present techniques and methodologies for the manipulation of magnetic micro- and nanoparticles ('...
Noncontact actuation, transmission and manipulation are key factors for compactness, high precision ...
We describe an on-chip system to control the actuation of micrometer- and nanometer-sized magnetic p...
We present the defined actuation of a single magnetic particle on a crossbar array chip. Two orthogo...