Fitted with nanoscale grippers, these microrobots offer new opportunities for imaging and manipulating single cells.
Fitted with nanoscale grippers, these microrobots offer new opportunities for imaging and manipulating single cells.
This robotic feeding system trained with machine learning will transform lives, giving independence to those with severe mobility issues.
With its unique carbon fiber skeleton, this jumping robot closely mimics the energy-storing tissue found in insects.
A biohybrid robot made from oats moves in response to humidity and is being tested as a biodegradable vector for reforestation efforts.
These biohybrid machines combine robotics with living tissues to create flexible robots powered by biology.
A transparent underwater robot camouflages itself to explore the ocean, reducing encounters with delicate sea life.
DeepStalk does away with a hard shell for a soft body and integrated parts to function under pressure and explore the deep sea.
The system could be used by surgeons performing procedures to treat brain tumors and Parkinson’s disease.
A miniature, shape-changing robot could have applications in search and rescue, scuttling across tight and cluttered environments like an insect.
Swarms of iron-clad algae have been built to sweep through bodies of water to collect elusive bits of micro- and nanoplastics.