We present a novel method for the three-dimensional (3D) control of microrobots within a microfluidic chip. The microrobot body contains a hollow space, producing buoyancy that allows it to float in a microfluidic environment. The robot moves in the z direction by balancing magnetic and buoyancy forces. In coordination with the motion of stages in the xy plane, we achieved 3D microrobot control. A microgripper designed to grasp micron-scale objects was attached to the front of the robot, allowing it to hold and deliver micro-objects in three dimensions. The microrobot had four degrees of freedom and generated micronewton-order forces. We demonstrate the microrobot’s utility in an experiment in which it grips a 200 μm particle and delivers i...
Summary: There is growing interest in controlled liquid manipulation that is crucial for microfluidi...
For targeted transport in the body, biomedical microbots (μbots) must move effectively in three‐dime...
The Electromagnetic robots have received much attention because of their advantages of control agili...
Untethered mobile microrobots, robotic systems where the untethered mobile component has a character...
We demonstrate noncontact transport of microscale objects in liquid environments using untethered, m...
A new microrobot manipulation technique with high precision (nano level) positional accuracy to move...
Biohybrid microbots with small body size, have been integrated successfully into miniaturized system...
Untethered, controllable, mobile microrobots have been proposed for numerous applications, ranging f...
Untethered, controllable, mobile microrobots have been proposed for numerous applications, ranging f...
Biohybrid microbots with small body size, have been integrated successfully into miniaturized system...
This paper proposes an effective method to manipulate the 2D motions of a magnetic small-scale robot...
Microrobots have a number of potential applications for micromanipulation and assembly, but also off...
Magnetic micro-robots are small robots under 1mm in size, made of magnetic materials, with relativel...
<p>Magnetic micro-robots are small robots under 1mm in size, made of magnetic materials, with relati...
Untethered microrobotic grasping has enabled the precise manipulation of small components in difficu...
Summary: There is growing interest in controlled liquid manipulation that is crucial for microfluidi...
For targeted transport in the body, biomedical microbots (μbots) must move effectively in three‐dime...
The Electromagnetic robots have received much attention because of their advantages of control agili...
Untethered mobile microrobots, robotic systems where the untethered mobile component has a character...
We demonstrate noncontact transport of microscale objects in liquid environments using untethered, m...
A new microrobot manipulation technique with high precision (nano level) positional accuracy to move...
Biohybrid microbots with small body size, have been integrated successfully into miniaturized system...
Untethered, controllable, mobile microrobots have been proposed for numerous applications, ranging f...
Untethered, controllable, mobile microrobots have been proposed for numerous applications, ranging f...
Biohybrid microbots with small body size, have been integrated successfully into miniaturized system...
This paper proposes an effective method to manipulate the 2D motions of a magnetic small-scale robot...
Microrobots have a number of potential applications for micromanipulation and assembly, but also off...
Magnetic micro-robots are small robots under 1mm in size, made of magnetic materials, with relativel...
<p>Magnetic micro-robots are small robots under 1mm in size, made of magnetic materials, with relati...
Untethered microrobotic grasping has enabled the precise manipulation of small components in difficu...
Summary: There is growing interest in controlled liquid manipulation that is crucial for microfluidi...
For targeted transport in the body, biomedical microbots (μbots) must move effectively in three‐dime...
The Electromagnetic robots have received much attention because of their advantages of control agili...