Nature provides a wide range of inspiration for building mobile micromachines that can navigate through confined heterogenous environments and perform minimally invasive environmental and biomedical operations. For example, microstructures fabricated in the form of bacterial or eukaryotic flagella can act as artificial microswimmers. Due to limitations in their design and material properties, these simple micromachines lack multifunctionality, effective addressability and manoeuvrability in complex environments. Here we develop an origami-inspired rapid prototyping process for building self-folding, magnetically powered micromachines with complex body plans, reconfigurable shape and controllable motility. Selective reprogramming of the mech...
International audienceMany motile microorganisms swim and navigate in chemically and mechanically co...
Many motile microorganisms swim and navigate in chemically and mechanically complex environments. Th...
Self-propelled microjet engines (microbots) can transport multiple cells into specific locations in ...
Nature provides a wide range of inspiration for building mobile micromachines that can navigate thro...
Researchers in biomedical applications have long had interest in the creation of smaller, softer, sa...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
Nature-inspired actuators that can be driven by various stimuli are an emerging application in mobil...
AbstractThe development of mobile un-tethered microscale robots could revolutionize the future of me...
Self-propelled bacteria can be integrated into synthetic micromachines and act as biological propell...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
Discovery of bio-inspired, self-propelled and externally-powered nano-/micro-motors, rotors and engi...
A soft microrobot composed of a microgel and driven by the light-controlled nonequilibrium dynamics ...
Swimming is a fundamental feature in many living systems. Biological microorganisms move in the sear...
The 1966 movie Fantastic Voyage captured the world's imagination, portraying a tiny submarine naviga...
Nature consists of numerous solutions to overcome challenges in designing artificial systems. Variou...
International audienceMany motile microorganisms swim and navigate in chemically and mechanically co...
Many motile microorganisms swim and navigate in chemically and mechanically complex environments. Th...
Self-propelled microjet engines (microbots) can transport multiple cells into specific locations in ...
Nature provides a wide range of inspiration for building mobile micromachines that can navigate thro...
Researchers in biomedical applications have long had interest in the creation of smaller, softer, sa...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
Nature-inspired actuators that can be driven by various stimuli are an emerging application in mobil...
AbstractThe development of mobile un-tethered microscale robots could revolutionize the future of me...
Self-propelled bacteria can be integrated into synthetic micromachines and act as biological propell...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
Discovery of bio-inspired, self-propelled and externally-powered nano-/micro-motors, rotors and engi...
A soft microrobot composed of a microgel and driven by the light-controlled nonequilibrium dynamics ...
Swimming is a fundamental feature in many living systems. Biological microorganisms move in the sear...
The 1966 movie Fantastic Voyage captured the world's imagination, portraying a tiny submarine naviga...
Nature consists of numerous solutions to overcome challenges in designing artificial systems. Variou...
International audienceMany motile microorganisms swim and navigate in chemically and mechanically co...
Many motile microorganisms swim and navigate in chemically and mechanically complex environments. Th...
Self-propelled microjet engines (microbots) can transport multiple cells into specific locations in ...