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soft robotics
Trends
- 1Paper-thin robot powered by muscle cells swims through mazes▼Powered by muscle cells, a paper-thin robot swims through watery maze
MIT researchers have built a paper-thin swimming robot that moves using living muscle cells rather than motors. The soft robotic swimmer can navigate through watery mazes, demonstrating precise control of biohydraulic movement in a device thin enough to be flexible like paper. The work highlights growing progress in biohybrid robotics, where engineered living tissue is combined with synthetic materials to create machines that move in ways conventional robots cannot.
- 2Soft robotic exosuit helps older adults stand and walk●A soft robotic # exosuit developed at TUM helps older adults stand up and walk more efficiently. In a study, 10 particip
Researchers at the Technical University of Munich have developed a soft robotic exosuit that assists older adults with standing up and walking. In a study, 10 participants completed sit-to-stand movements faster while wearing the suit, which supports the body with fabric-based actuators rather than a rigid frame. The work points to assistive robotics that could help seniors stay mobile and independent in daily life.
- 3Elastic robot jumps endlessly powered by infrared light▼Wind-up elastic robot jumps forever when fed infrared light
Researchers have developed a wind-up elastic robot that can keep jumping continuously when supplied with infrared light. The material converts the light into heat, re-tensioning its elastic body so the hopping cycle repeats without batteries or manual rewinding. The demonstration is drawing attention as a possible route to small, untethered soft robots for exploration or search tasks.
- 4ETH Zurich's robotic hand draws on Addams Family inspiration●How a character from 'The Addams Family' is shaping the future of robotics https://www.fastcompany.com/91611631/eth-zuri
Fast Company reports that ETH Zurich's Soft Robotics Lab has developed a robotic hand inspired by Thing, the disembodied hand character from 'The Addams Family'. The project uses soft robotics to build a more flexible, lifelike gripper, and is being discussed as an example of how playful pop-culture references can drive serious innovation in robotic design.
- 5Paper-thin swimming robot powered by living muscle cells●A paper-thin, biohybrid swimming robot powered by a single layer of genetically engineered, living muscle cells that fla
Researchers have unveiled a paper-thin biohybrid swimming robot driven by a single layer of genetically engineered, living muscle cells that contract in response to light, making the device move with a flapping motion. The work combines mechanical and biological engineering, and is drawing attention as an example of how living tissue can be integrated into soft robotics for swimming machines.
- 6Light-controlled robot material mimics Venus flytrap grip▼Venus flytrap-inspired 'robot hand' material senses objects and grasps them under light
Researchers have developed a Venus flytrap-inspired material that works like a robotic hand: it senses nearby objects and automatically grasps them when stimulated by light. The soft, light-responsive design could open new possibilities in soft robotics and automated handling, and the unusual bio-inspired approach is drawing attention across science and technology news.
- 7KAIST Unveils Venus Flytrap-Inspired Robot Hand Material▼KAIST develops a Venus flytrap-inspired ‘robot hand’ material that senses objects and grasps them under light
Researchers at the Korea Advanced Institute of Science and Technology (KAIST) have developed a new material inspired by the Venus flytrap that can sense objects and grasp them when exposed to light. The finding points to soft robotic hands that respond to stimuli without complex electronics, and it is drawing attention in robotics and materials science circles.
- 8Paper-thin robot powered by muscle cells navigates watery maze▼Powered by muscle cells, a paper-thin robot swims through a watery maze
Researchers have unveiled a paper-thin robot driven by living muscle cells that can swim its way through an underwater maze. The biohybrid device, reported by Tech Xplore, demonstrates how engineered muscle tissue can be used to propel soft microrobots through complex aquatic environments, a step with potential applications in medicine and targeted delivery.
- 9KAIST Unveils Venus Flytrap-Inspired Robot Hand Material●KAIST Develops a Venus Flytrap-Inspired ‘Robot Hand’ Material That Senses Objects and Grasps Them Under Light | Newswise
Researchers at KAIST in South Korea have developed a new material for robotic hands inspired by the Venus flytrap, which can sense objects and grasp them when stimulated by light. The biomimetic design is being reported by science news outlets, drawing attention for combining sensing and actuation in a single soft material that responds without complex electronics.
- 10ETH Zurich robotic hand walks on its fingertips●Discover the extraordinary ETH Zurich robotic hand. Researchers successfully trained this detached mechanical hand to wa
Researchers at ETH Zurich have trained a detached mechanical hand to walk independently on its fingertips, demonstrating striking advances in soft robotics and AI control. Clips of the eerie, lifelike movement are spreading widely online, with commenters marvelling at the dexterity and debating how such technology could be used in prosthetics, research and automation.