We develop biohybrid magnetic microrobots by electrostatic self-assembly of nonmotile sperm cells and magnetic nanoparticles. Incorporating a biological entity into microrobots entails many functional advantages beyond shape templating, such as the facile uptake of chemotherapeutic agents to achieve targeted drug delivery. We present a single-step electrostatic self-assembly technique to fabricate IRONSperms, soft magnetic microswimmers that emulate the motion of motile sperm cells. Our experiments and theoretical predictions show that the swimming speed of IRONSperms exceeds 0.2 body length/s (6.8 ± 4.1 µm/s) at an actuation frequency of 8 Hz and precision angle of 45°. We demonstrate that the nanoparticle coating increases the acoustic im...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
Nature consists of numerous solutions to overcome challenges in designing artificial systems. Variou...
Attempts to apply artificial nano/micromotors for diverse biomedical applications have inspired a va...
We develop biohybrid magnetic microrobots by electrostatic self-assembly of nonmotile sperm cells an...
We develop biohybrid magnetic microrobots by electrostatic self-assembly of nonmotile sperm cells an...
Individual biohybrid microrobots have the potential to perform biomedical in vivo tasks such as remo...
Spermatozoa are efficient microswimmers which perform a bending wave motion for their forward propul...
We study the magnetic-based motion control of a sperm-flagella driven Micro-Bio-Robot (MBR), and dem...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
Magnetic micro- and nanorobots are promising candidates for the delivery of therapeutic agents in di...
We experimentally demonstrate that using oscillating weak magnetic fields a sperm-shaped microrobot ...
Abstract Sperm cells can move at a high speed in biofluids based on the flexible flagella, which ins...
Wireless micro- and nanorobots are biomedical devices with a potential use in high-precision minimal...
With the advent of small-scale robotics, several exciting new applications like Targeted Drug Delive...
Micromotors are recognized as promising candidates for untethered micromanipulation and targeted car...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
Nature consists of numerous solutions to overcome challenges in designing artificial systems. Variou...
Attempts to apply artificial nano/micromotors for diverse biomedical applications have inspired a va...
We develop biohybrid magnetic microrobots by electrostatic self-assembly of nonmotile sperm cells an...
We develop biohybrid magnetic microrobots by electrostatic self-assembly of nonmotile sperm cells an...
Individual biohybrid microrobots have the potential to perform biomedical in vivo tasks such as remo...
Spermatozoa are efficient microswimmers which perform a bending wave motion for their forward propul...
We study the magnetic-based motion control of a sperm-flagella driven Micro-Bio-Robot (MBR), and dem...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
Magnetic micro- and nanorobots are promising candidates for the delivery of therapeutic agents in di...
We experimentally demonstrate that using oscillating weak magnetic fields a sperm-shaped microrobot ...
Abstract Sperm cells can move at a high speed in biofluids based on the flexible flagella, which ins...
Wireless micro- and nanorobots are biomedical devices with a potential use in high-precision minimal...
With the advent of small-scale robotics, several exciting new applications like Targeted Drug Delive...
Micromotors are recognized as promising candidates for untethered micromanipulation and targeted car...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
Nature consists of numerous solutions to overcome challenges in designing artificial systems. Variou...
Attempts to apply artificial nano/micromotors for diverse biomedical applications have inspired a va...