From search-and-rescue missions to orthopedic therapy and many other applications, soft robots and wearable electronic devices show great promise for...
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Research at Michigan State University is focused on teaching robots to use colors to perceive, visualize, and interpret interactions when manipulating objects. A force-interpreting optical system is being developed so robots can distinguish and manipulate soft and fragile objects—which will be particularly helpful for medical and other assistive robots.
From search-and-rescue missions to orthopedic therapy and many other applications, soft robots and wearable electronic devices show great promise for...
A new fingertip device developed by researchers at University College London (UCL) mimics the sensation of real touch, opening up exciting...
A new dining trend is emerging in the center of Nairobi, where patrons can mingle with robots that move between tables with effortlessness, completely...
Researchers at Rolls-Royce University Technology Centre (UTC) in Manufacturing and On-Wing Technology at the University of Nottingham have developed...
Researchers at Rolls-Royce University Technology Centre (UTC) in Manufacturing and On-Wing Technology at the University of Nottingham have developed...
Scientists at the Max-Planck-Institute for Intelligent Systems (MPI-IS) have developed hexagon-shaped robotic components, called modules, that can be...
Soft robots and wearable devices hold great potential for many uses, from search-and-rescue missions to medical therapies like helping people recover...
Soft robots and wearable devices hold great potential for many uses, from search-and-rescue missions to medical therapies like helping people recover...
Butterflies can see more of the world than humans, including more colors and the field oscillation direction, or polarization, of light. This special...
Butterflies can see more of the world than humans, including more colors and the field oscillation direction, or polarization, of light. This special...