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How Two Paralyzed Patients Walked Again Without Surgery

The protocol, dubbed Walk Again Neuro-Rehabilitation (WA-NR), first uses EEG to record and control virtual avatars and robotic exoskeleton walkers while the patient wears a “tactile shirt” that offers them sensory feedback. This stimulation theoretically teaches damaged nerves to reroute their motor functions to healthy ones. Following the program for just three years, the patients—some paralyzed for decades—dramatically regained sensation in their lower limbs. They could feel where their legs were in space and better control their lower limbs. Some even reported feelings of normal, welcomed pain after a sharp jab.

The current study, published in Scientific Reports, takes neurorehab a step further. In two patients from the original cohort, the team further trained and examined their neuro-recovery in detail. Patient P1 was a middle-aged man paralyzed for 4.5 years at the onset of the study; P2, a 32-year-old, had been paralyzed for a decade. Although trained with WA-NR, both patients scored on the low end of overall movement, with the ability to extend their knees at most.

For each training session, the patients wore an EEG cap to measure movement intent and had eight electrodes placed on the skin of each leg to stimulate muscles. Simultaneously they wore a haptic shirt, which gave them a sense of their body in space by stimulating their forearms.

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First-of-its-kind platform aims to rapidly advance prosthetics

A new open-source, artificially intelligent prosthetic leg designed by researchers at the University of Michigan and Shirley Ryan AbilityLab is now available to the scientific community.

The leg’s free-to-copy design and programming are intended to improve the quality of life of patients and accelerate by offering a unified platform to fragmented research efforts across the field of bionics.

“Our Open-Source Bionic Leg will enable investigators to efficiently solve challenges associated with controlling across a range of activities in the lab and out in the community,” said lead designer Elliott Rouse, core faculty at U-M’s Robotics Institute and assistant professor of mechanical engineering. “In addition, we hope our bionic leg will unite researchers with a common hardware platform and enable new investigators from related fields to develop innovative control strategies.”

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Jeff Bezos wants to build the infrastructure for space startups

At its re: Mars conference, Amazon’s CEO Jeff Bezos took the stage today to be “interviewed” by Jenny Freshwater, Amazon’s director of forecasting. As any AWS machine learning tool could have forecasted, having an employee interview her boss didn’t lead to any challenging questions or especially illuminating answers, but Bezos did get a chance to talk about a variety of topics, ranging from business advice to his plans for Blue Origin.

We can safely ignore the business advice, given that Amazon’s principle of “disagree and commit” is about as well known as it could be, but his comments about Blue Origin, his plans for moon exploration and its relationship to startups were quite interesting.


He noted that we now know so much more about the moon than ever before, including that it does provide a number of resources that make it a good base for further space exploration. “The reason we need to go to space is to save the Earth,” he said. “We are going to grow this civilization — and I’m talking about something that our grandchildren will work on — and their grandchildren. This isn’t something that this generation is able to accomplish. But we need to move heavy industry off Earth.”

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Amazon says drone deliveries coming ‘within months’

Amazon said Wednesday it expects to begin large-scale deliveries by drone in the coming months as it unveiled its newest design for its “Prime Air” fleet.

Jeff Wilke, head of Amazon’s consumer operations, told the company’s Machine Learning, Automation, Robotics and Space conference in Las Vegas that drones would play a role in ramping up efforts to shorten delivery times for many items to just one day for Amazon Prime members.

“We’ve been hard at work building fully electric drones that can fly up to 15 miles (25 kilometers) and deliver packages under five pounds (2.3 kilos) to customers in less than 30 minutes,” Wilke said in a blog post.

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Driverless cars: once they’re on the road, human drivers should be banned

Self-driving cars could revolutionise people’s lives. By the end of the next decade, or perhaps even sooner, they could radically transform public spaces and liberate us from the many problems of mass car ownership. They’ll also be much better behaved than human drivers.

Robot drivers won’t break the speed limit, jump the lights, or park where they shouldn’t. They won’t drive under the influence of drink or drugs. They’ll never get tired or behave aggressively. They won’t be distracted by changing the music or sending a text, and they’ll never be trying to impress their mates.

Driverless cars could also change the face of . Private cars are very expensive items that do absolutely nothing 95% of the time. They are economically viable only because paying a taxi driver for all your car journeys would be even more expensive. Once cars don’t need human drivers, this cost balance should tip the other way.

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DARPA’s New Project Is Investing Millions in Brain-Machine Interface Tech

When Elon Musk and DARPA both hop aboard the cyborg hypetrain, you know brain-machine interfaces (BMIs) are about to achieve the impossible.

BMIs, already the stuff of science fiction, facilitate crosstalk between biological wetware with external computers, turning human users into literal cyborgs. Yet mind-controlled robotic arms, microelectrode “nerve patches”, or “memory Band-AIDS” are still purely experimental medical treatments for those with nervous system impairments.

With the Next-Generation Nonsurgical Neurotechnology (N3) program, DARPA is looking to expand BMIs to the military. This month, the project tapped six academic teams to engineer radically different BMIs to hook up machines to the brains of able-bodied soldiers. The goal is to ditch surgery altogether—while minimizing any biological interventions—to link up brain and machine.

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