Powered by muscle cells, a paper-thin robot swims through watery maze
What happened
But as MIT engineers have found, even a single layer of muscle cells can power through water if designed right. MIT engineers’ new aquabot offers a way to design small, efficient “biohybrid” robots.
Swimming can take a lot of muscle. In a paper appearing today in the journal Advanced Functional Materials , the team presents a design for a thin, muscle-powered swimming robot.
The “skeleton” of the aquabot is made from a film of gel that is about the length and width of a stick of gum. The two halves of the gel form the “fins” of the bot.
Sources & evidence
- MIT News / Massachusetts Institute of Technology Primary / official
Powered by muscle cells, a paper-thin robot swims through watery maze ↗
https://news.mit.edu/2026/powered-by-muscle-cells-paper-thin-robot-swims-through-watery-maze-0929