Witness the complex engineering behind a functional DIY exoskeleton that utilizes innovative hydrogen-powered artificial ...
Researchers at Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU) are scaling individual molecular machines into ...
Researchers at Seoul National University have developed an artificial muscle that can change shape ...
Roboticists have been motivated by a long-standing goal to make robots safer. The new actuator could be used to develop inexpensive, soft, flexible robots which are safer and more practical for ...
Breaking away from conventional robots that perform only predefined functions once fabricated, researchers have developed a ...
The contraction process involves interactions between actin and myosin filaments within the sarcomeres to generate force. Recent research has achieved significant advances in functional design, ...
Engineers designed modular, spring-like devices to maximize the work of live muscle fibers so they can be harnessed to power biohybrid robots. Our muscles are nature's perfect actuators -- devices ...