October 08, 2026 01:36 am (IST)
Follow us:
facebook-white sharing button
twitter-white sharing button
instagram-white sharing button
youtube-white sharing button
RBI shocks borrowers with first repo rate hike since 2023; rates raised to 5.50% | ‘Completely false’: Virat Kohli reacts to ₹5 crore claim over Premanand Maharaj visit | We’re watching it very closely: US urges Russia to share more information on plague situation | This isn’t about schools: Trump blames ‘mass migration’ and Islam for violent protests across France | ‘Crash axe’ blow fractured Smit Machchhar’s skull: Shocking details emerge from flydubai cockpit horror | ‘Vote thief’ Gyanesh Kumar: Rahul Gandhi climbs barricade, waves Tricolour during explosive INDIA bloc protest | ‘Crash axe’ blow fractured Smit Machchhar’s skull: Shocking details emerge from flydubai cockpit horror | ‘He should not have been flying’: JD Vance on Flydubai co-pilot | Israel was ready to shoot down Flydubai jet if it kept flying towards Tel Aviv: Reports | 'If law wasn't followed, we can undo it': Supreme Court's big warning on SIR process amid Gyanesh Kumar row

Scientists develop smart microrobots that can adapt to their surroundings

| @indiablooms | Jan 21, 2019, at 05:17 pm

London, Jan 21 (IBNS): Scientists at EPFL and ETH Zurich have developed tiny elastic robots that can change shape depending on their surroundings.

Modeled after bacteria and fully biocompatible, these robots optimize their movements so as to get to hard-to-reach areas of the human body.

They stand to revolutionize targeted drug delivery, read the  EPFL website.

One day we may be able to ingest tiny robots that deliver drugs directly to diseased tissue, thanks to research being carried out at EPFL and ETH Zurich.

The group of scientists – led by Selman Sakar at EPFL and Bradley Nelson at ETH Zurich – drew inspiration from bacteria to design smart, biocompatible microrobots that are highly flexible. Because these devices are able to swim through fluids and modify their shape when needed, they can pass through narrow blood vessels and intricate systems without compromising on speed or maneuverability. They are made of hydrogel nanocomposites that contain magnetic nanoparticles allowing them to be controlled via an electromagnetic field.

In an article appearing in Science Advances, the scientists describe the method they have developed for “programming” the robot’s shape so that it can easily travel through fluids that are dense, viscous or moving at rapid speeds.

Embodied intelligence

When we think of robots, we generally think of bulky machines equipped with complex systems of electronics, sensors, batteries and actuators. But on a microscopic scale, robots are entirely different.

Fabricating miniaturized robots presents a host of challenges, which the scientists addressed using an origami-based folding method. Their novel locomotion strategy employs embodied intelligence, which is an alternative to the classical computation paradigm that is performed by embedded electronic systems. “Our robots have a special composition and structure that allow them to adapt to the characteristics of the fluid they are moving through. For instance, if they encounter a change in viscosity or osmotic concentration, they modify their shape to maintain their speed and maneuverability without losing control of the direction of motion,” says Sakar.

These deformations can be “programmed” in advance so as to maximize performance without the use of cumbersome sensors or actuators. The robots can be either controlled using an electromagnetic field or left to navigate on their own through cavities by utilizing fluid flow. Either way, they will automatically morph into the most efficient shape.

Image: EPFL website

Support Our Journalism

We cannot do without you.. your contribution supports unbiased journalism

IBNS is not driven by any ism- not wokeism, not racism, not skewed secularism, not hyper right-wing or left liberal ideals, nor by any hardline religious beliefs or hyper nationalism. We want to serve you good old objective news, as they are. We do not judge or preach. We let people decide for themselves. We only try to present factual and well-sourced news.

Support objective journalism for a small contribution.