Add Yahoo as a preferred source to see more of our stories on Google. Striving to stand out in the competitive humanoid robotics market, Polish-frim Clone Robotics has unveiled its first full-scale ...
While biohybrid robots that crawl and swim have been built before with lab-grown muscle, this is the first such bipedal robot that can pivot and make sharp turns. It does this by applying electricity ...
Clone Robotics has released a new video of its first musculoskeletal android, Protoclone. Touted as the most anatomically accurate robot ever created, Protoclone is built on a natural human skeletal ...
The bot operates with very little current, allowing it to swim without making any noise. Did you know with a Plus subscription to Shropshire Star you get full access ...
A new robot created by researchers at Northwestern University looks and behaves like a tiny aquatic animal, and could serve a variety of functions, including moving things place to place, catalyzing ...
Add Yahoo as a preferred source to see more of our stories on Google. Clone Robotics, a Polish robotics company, unveiled its latest achievement: a humanoid torso capable of human-like movements. The ...
A Korean research team has developed a light-powered artificial muscle that operates freely underwater, paving the way for next-generation soft robotics. The research team—Dr. Hyun Kim at the Korea ...
The next generation of soft robots might be folding and sliding as effortlessly as living tissue, say a team of engineers who have created “magnetic muscles” with 3D printing. Filling elastic, ...
A muscle from the slug's mouth helps the robot move, which is currently controlled by an external electrical field. Future iterations of the device will include ganglia – bundles of neurons and nerves ...
Engineers at MIT have devised an ingenious new way to produce artificial muscles for soft robots that can flex in more than one direction, similar to the complex muscles in the human body. The team ...
The double helix of DNA is one of the most iconic symbols in science. By imitating the structure of this complex genetic molecule we have found a way to make artificial muscle fibers far more powerful ...
Tiny electrically activated "muscles" could one day give rise to microscopic robots that are smaller than a grain of sand, researchers say. The chains of particles that make up these muscles could ...