Science Scientists inspired by 'Star Wars' create artificial skin able to feel - Singapore did something useful for a change


Scientists inspired by 'Star Wars' create artificial skin able to feel

SINGAPORE (Reuters) - Singapore researchers have developed "electronic skin" capable of recreating a sense of touch, an innovation they hope will allow people with prosthetic limbs to detect objects, as well as feel texture, or even temperature and pain.

The device, dubbed ACES, or Asynchronous Coded Electronic Skin, is made up of 100 small sensors and is about 1 sq cm (0.16 square inch) in size.

The researchers at the National University of Singapore say it can process information faster than the human nervous system, is able to recognise 20 to 30 different textures and can read Braille letters with more than 90% accuracy.

"So humans need to slide to feel texture, but in this case the skin, with just a single touch, is able to detect textures of different roughness," said research team leader Benjamin Tee, adding that AI algorithms let the device learn quickly.

A demonstration showed the device could detect that a squishy stress ball was soft, and determine that a solid plastic ball was hard.

"When you lose your sense of touch, you essentially become numb... and prosthetic users face that problem," said Tee.

"So by recreating an artificial version of the skin, for their prosthetic devices, they can hold a hand and feel the warmth and feel that it is soft, how hard are they holding the hand," said Tee.

Tee said the concept was inspired by a scene from the "Star Wars" movie trilogy in which the character Luke Skywalker loses his right hand and it is replaced by a robotic one, seemingly able to experience touch sensations again.

The technology is still in the experimental stage, but there had been "tremendous interest", especially from the medical community, Tee added.

Similar patents developed by his team include a transparent skin that can repair itself when torn and a light-emitting material for wearable electronic devices, Tee said.

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Seems a little early to be proclaiming this as something that will actually feasibly be available to the average person. It sounds like something that will be very expensive and have its share of issues. But still its a step in the right direction
 
That way they can feel pain as they get caned.
 
Meh, I was never a Star Wars guy.
Imo, overall Star Trek is better since Star Wars is more like fantasy with a touch of SciFi whereas Star Trek is more like a true SciFi.

Edit:
Going to nerd out a bit here, but for prosthetic tech like what they're working on to ever truly develop to the point at which a prosthetic is a true 1 for 1 replacement, AI technology is going to have to advance drastically. Nerve mapping and signal decoding would be required on a one of a kind basis for each case, and only an AI would be able to do that in any practical way.
 
Última edición:
Imo, overall Star Trek is better since Star Wars is more like fantasy with a touch of SciFi whereas Star Trek is more like a true SciFi.

Edit:
Going to nerd out a bit here, but for prosthetic tech like what they're working on to ever truly develop to the point at which a prosthetic is a true 1 for 1 replacement, AI technology is going to have to advance drastically. Nerve mapping and signal decoding would be required on a one of a kind basis for each case, and only an AI would be able to do that in any practical way.
They are supposed to be making good progress in the 3D-printing and growing of the simpler transplant organs. Maybe that is a more viable approach for replacing limbs.
 
They are supposed to be making good progress in the 3D-printing and growing of the simpler transplant organs. Maybe that is a more viable approach for replacing limbs.
I think you're most likely right, but I don't really feel like this tech avenue is going to die out even if that wins the race. People are eventually going to want something akin to Cyberpunk 2077, and advanced prosthetics could in theory do more along those lines than organ cloning ever could. Likewise, there will likely be some oddball cases where organ/limb cloning isn't an option because it would be cloning parts that are flawed at the genetic level from birth (e.g. most cases of ventricular septal defect). In these cases an advanced synthetically produced prosthetic would be an all-around better option.
 
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