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Tuesday, March 31, 2026

Leiden Researchers 3D Print Brainless Microrobots That Swim and Dodge Obstacles Like Residing Animals


Researchers at Leiden College have created 3D-printed microrobots simply tens of micrometres lengthy that may swim, sense their environment, and steer round obstacles with none sensors, software program, or exterior management. The findings have been printed March 27, 2026 in PNAS.

Professor Daniela Kraft and researcher Mengshi Wei designed the robots as versatile, chain-like buildings made up of related segments, every component measuring simply 5 micrometres throughout, with bar-joints as skinny as 0.5 micrometres. To place that in context, a human hair runs 70 to 100 micrometres thick. The buildings have been printed on a Nanoscribe 3D microprinter, which the workforce notes is printing on the very fringe of what’s technically doable.

The robots’ habits emerges totally from their form. When an electrical discipline is switched on, the chains begin shifting at roughly 7 micrometres per second. Kraft stated that what shocked the workforce was the fixed suggestions loop between form and movement: ‘the form influences the way it strikes, and its actions in flip alters its form.’ Meaning no microscopic electronics are wanted to present the system what she calls sensible skills.

The workforce’s assessments revealed habits that appears strikingly animal-like. When a robotic will get slowed or stopped, Wei says, ‘it begins to wave its tail as if it desires to interrupt free,’ as a result of the rear segments maintain making an attempt to propel ahead. When it hits an impediment, it routinely searches for one more route. Two robots that encounter one another steer away with none coordination. They will additionally push objects blocking their path out of the way in which.

Leiden Researchers 3D Print Brainless Microrobots That Swim and Dodge Obstacles Like Living AnimalsLeiden Researchers 3D Print Brainless Microrobots That Swim and Dodge Obstacles Like Residing Animals
Credit score: Leiden College

The inspiration for the design got here from worms and snakes, which constantly reshape their our bodies to maneuver by their environments. Till now, Kraft explains, microrobots have been ‘both small and inflexible, or giant and versatile.’ Getting each small and versatile in the identical system had been the lacking piece.

Kraft stated the following step is knowing precisely how the dynamic habits emerges: ‘This data will assist us develop extra superior microrobots and gadgets, but additionally to higher perceive the physics of organic microswimmers and organisms.’ The workforce sees potential functions in focused drug supply, minimally invasive medical procedures, and diagnostics.

Supply: universiteitleiden.nl

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