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    Continuous artificial muscle enables dexterous soft-robot motion▼A continuous artificial muscle unlocks dexterous soft-robot motion✉newsTechnologyRobotics59 min ago

    Researchers have developed a continuous artificial muscle that allows soft robots to move with greater dexterity. Reported by Tech Xplore, the advance points to machines that can bend, grip and adapt more like biological limbs, potentially improving applications in handling delicate objects, medical devices and wearable robotics. Details of the team behind the work and its performance benchmarks were not included in the available coverage.

  2. 2
    Living muscle powers paper-thin robot breakthrough▼Living muscle gives a paper-thin robot a powerful new lease on life✉newsTechnologyRobotics2 h ago

    Researchers have equipped a paper-thin robot with living muscle tissue, giving the tiny machine a dramatic boost in strength and movement. The biohybrid design suggests new possibilities for soft robotics in medicine and delicate tasks. Details of the team and institution behind the work remain sparse, but the fusion of biological muscle with ultra-thin robotic frames is drawing attention across the robotics field.

  3. 3

    Researchers at MIT have developed a small aquatic robot driven by living muscle tissue rather than conventional motors. The biohybrid bot is reported to swim using muscle that responds to stimulation, pointing to possible uses in medicine and environmental monitoring where soft, lifelike movement is an advantage. Tech outlets are covering it as a notable step for biohybrid robotics.

  4. 4
    Bio-inspired robot lands on water and becomes autonomous sailboat▼Bio-inspired airborne robot makes soft water landing, converts to autonomous sailboat✉newsTechnologyRobotics7 h ago

    Researchers have unveiled a bio-inspired airborne robot capable of making a soft landing on water and then converting into an autonomous sailboat. The hybrid design allows the craft to fly to a target, set down gently on the surface, and continue operating as a sailing vessel, combining aerial mobility with water-based endurance in a single vehicle.