Robots that can think and move are no longer confined to factory floors or humanoid prototypes. Researchers have now shrunk ...
Measuring just 200 by 300 by 50 micrometers — smaller than a grain of salt and roughly the size of a single-celled paramecium ...
Scientists have built microscopic, light-powered robots that can think, swim, and operate independently at the scale of ...
Researchers built autonomous robots the size of salt grains—with onboard computers, sensors, and motors that think and swim ...
Signal Enhancement: An acoustic-driven signal enhancement approach based on NeRF acoustic field modeling and nested generative networks supplements missing or incomplete EEG data through acoustic ...
Scientists have created robots smaller than a grain of salt that can sense their surroundings, make decisions, and move ...
A new peer-reviewed study published in ACS Applied Nano Materials demonstrates a new type of AI-enabled brain-machine interface (BMI) featuring noninvasive biosensor nanotechnology and augmented ...
The Francis College of Engineering, Department of Electrical and Computer Engineering, invites you to attend a Doctoral Dissertation Proposal defense by Russell Perkins entitled: "Deciding When Robots ...
Robots need to move, right? That’s where actuators and motors come in. Think of them as the muscles and joints of a robot.