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Archive for the ‘cyborgs’ category: Page 44

Jul 26, 2021

Apple Rumored to Have Ordered More Than 100 Million A15 Bionic Chips From TSMC

Posted by in categories: computing, cyborgs, transhumanism

Likely due to high demand expectations, Apple has rumored to have ordered more than 100 million A15 Bionic chips from TSMC.

Jul 24, 2021

Neuroprosthesis for Decoding Speech in a Paralyzed Person with Anarthria

Posted by in categories: biotech/medical, cyborgs

Original Article from The New England Journal of Medicine — Neuroprosthesis for Decoding Speech in a Paralyzed Person with Anarthria.


Dr. Moses, Mr. Metzger, and Ms. Liu contributed equally to this article.

A data sharing statement provided by the authors is available with the full text of this article at NEJM.org.

Continue reading “Neuroprosthesis for Decoding Speech in a Paralyzed Person with Anarthria” »

Jul 23, 2021

Scientists Made a Biohybrid Nose Using Cells From Mosquitoes

Posted by in categories: bioengineering, biotech/medical, cyborgs, health, transhumanism

💠 Japanese researchers have created a “nose” mosquito that can detect odors from tiny droplets of liquid droplets. The research could lead to the creation of Smell-O-Vision for machines and a means of diagnosing early cancer, they say. Japanese researchers have created a “nose” that can detect different odors at the same time. The team used two bubbles, each filled with oil, broken horizontally, to create a squinted figure-eight. They hope to use it to develop an artificial nose in the future.

Researchers have developed a “bionic nose” that can detect odor molecules. The team hopes to use the device as an inexpensive way to diagnose the early stages of illness. Eventually, the team wants to use their bionic nose for cancer and other health issues. They hope to make the device available to the public soon.

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Jul 20, 2021

Scientists Warn of “Bleak Cyborg Future” From Brain-Computer Interfaces

Posted by in categories: biological, computing, cyborgs, law, neuroscience

Researchers warn of the potential social, ethical, and legal consequences of technologies interacting heavily with human brains.

Surpassing the biological limitations of the brain and using one’s mind to interact with and control external electronic devices may sound like the distant cyborg future, but it could come sooner than we think.

Researchers from Imperial College London conducted a review of modern commercial brain-computer interface (BCI) devices, and they discuss the primary technological limitations and humanitarian concerns of these devices in APL Bioengineering, from AIP Publishing.

Jul 20, 2021

Printing embedded tech in artificial skin just got easier

Posted by in categories: cyborgs, futurism

This article is an installment of The Future Explored, a weekly guide to world-changing technology. You can get stories like this one straight to your inbox every Thursday morning by subscribing here.

This month, Stanford researchers brought us one step closer to artificial skin with embedded electronics that can flex and bend with the body.

Jul 20, 2021

Engineers develop practical way to make artificial skin

Posted by in categories: chemistry, computing, cyborgs, wearables

Chemical engineer Zhenan Bao and her team of researchers at Stanford have spent nearly two decades trying to develop skin-like integrated circuits that can be stretched, folded, bent and twisted — working all the while — and then snap back without fail, every time. Such circuits presage a day of wearable and implantable products, but one hurdle has always stood in the way.

Namely, “How does one produce a completely new technology in quantities great enough to make commercialization possible?” Bao said. Bao and team think they have a solution. In a new study, the group describes how they have printed stretchable-yet-durable integrated circuits on rubbery, skin-like materials, using the same equipment designed to make solid silicon chips — an accomplishment that could ease the transition to commercialization by switching foundries that today make rigid circuits to producing stretchable ones.


Stanford researchers show how to print dense transistor arrays on skin-like materials to create stretchable circuits that flex with the body to perform applications yet to be imagined.

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Jul 19, 2021

A 3D-printed soft robotic hand that can play Nintendo

Posted by in categories: 3D printing, biotech/medical, cyborgs, robotics/AI

A team of researchers from the University of Maryland has 3D printed a soft robotic hand that is agile enough to play Nintendo’s Super Mario Bros. — and win!

The feat, highlighted on the front cover of the latest issue of Science Advances, demonstrates a promising innovation in the field of soft robotics, which centers on creating new types of flexible, that are powered using water or air rather than electricity. The inherent safety and adaptability of soft robots has sparked interest in their use for applications like prosthetics and biomedical devices. Unfortunately, controlling the fluids that make these soft robots bend and move has been especially difficult—until now.

The key breakthrough by the team, led by University of Maryland assistant professor of mechanical engineering Ryan D. Sochol, was the ability to 3D print fully assembled soft robots with integrated fluidic circuits in a single step.

Jul 16, 2021

Watch a 3D-printed robotic hand play Nintendo

Posted by in categories: cyborgs, robotics/AI

Using “soft robotics,” engineers at the University of Maryland built a prosthesis powered by water and air.

Jul 15, 2021

“Neuroprosthesis” Restores Words to Man with Paralysis

Posted by in categories: biotech/medical, cyborgs, neuroscience

Researchers at UC San Francisco have successfully developed a “speech neuroprosthesis” that has enabled a man with severe paralysis to communicate in sentences, translating signals from his brain to the vocal tract directly into words that appear as text on a screen.

The achievement, which was developed in collaboration with the first participant of a clinical research trial, builds on more than a decade of effort by UCSF neurosurgeon Edward Chang, MD, to develop a technology that allows people with paralysis to communicate even if they are unable to speak on their own. The study appears July 15 in the New England Journal of Medicine.

Jul 15, 2021

Replicating how plants move

Posted by in categories: biotech/medical, cyborgs, robotics/AI

Once studied by Charles Darwin, the Venus flytrap is perhaps the most famous plant that moves at high speed. But as Daniel Rayneau-Kirkhope explains, researchers are still unearthing new scientific insights into plant motion, which could lead to novel, bio-inspired robotic structures.

“In the absence of any other proof,” Isaac Newton is once said to have proclaimed, “the thumb alone would convince me of God’s existence.” With 29 bones, 123 ligaments and 34 muscles pulling the strings, the human hand is indeed a feat of nature’s engineering. It lets us write, touch, hold, feel and interact in exquisite detail with the world around us.

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