For targeted transport in the body, biomedical microbots (μbots) must move effectively in three‐dimensional (3D) microenvironments. Swimming μbots translate via asymmetric or screw‐like motions while rolling ones use friction with available surfaces to generate propulsive forces. Previously the authors have shown that planar rotating magnetic fields assemble μm‐scale superparamagnetic beads into circular μbots that roll along surfaces. In this, gravity is required to pull μbots near the surface; however, this is not necessarily practical in complex geometries. Here, the authors show that rotating magnetic fields, in tandem with directional magnetic gradient forces, can be used to roll μbots on surfaces regardless of orientation. Simplifying...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
Untethered mobile microrobots, robotic systems where the untethered mobile component has a character...
Microrobots have the potential to dramatically change many aspects of medicine by navigating through...
Development of targeted drug delivery systems using magnetic microrobots increases the therapeutic i...
Development of targeted drug delivery systems using magnetic microrobots increases the therapeutic i...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
Manipulation and navigation of micro and nanoswimmers in different fluid environments can be achieve...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
Soft-Millirobots have many applications in the biomedical field which is why they are commonly resea...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
Untethered mobile microrobots, robotic systems where the untethered mobile component has a character...
Microrobots have the potential to dramatically change many aspects of medicine by navigating through...
Development of targeted drug delivery systems using magnetic microrobots increases the therapeutic i...
Development of targeted drug delivery systems using magnetic microrobots increases the therapeutic i...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
Manipulation and navigation of micro and nanoswimmers in different fluid environments can be achieve...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
Soft-Millirobots have many applications in the biomedical field which is why they are commonly resea...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...