![]() Using just her brain, she was able to achieve liftoff on the screen. Ling described how early on the laboratory conducting the research connected one patient to a flight simulator instead of a robotic arm. "Now what's next? Well, what's next is where does your imagination take you?" Collect the brain signals, get the robot arm, clear use case, show the science can be done," Ling told in a 2021 interview. If you can understand the signals within the brain - a task entirely impossible before the advent of artificial intelligence, which allows the digestion of massive data sets, you might be able to alter them, or otherwise change the nature of the closed system the brain had been since humans developed oversized thinking lobes. All of a sudden, the concepts Ling had been contemplating became a national priority.Įarly on, scientists realized that the same medical research that would allow them to make prosthetics respond to the brain might also be used to enhance how troops fight, such as special operators communicating on the battlefield without uttering a word, interacting with a drone, or maybe even helping eradicate the fear of entering a room filled with enemies and the post-traumatic stress that can follow a firefight. What started as theoretical research quickly took on greater relevance when scores of service members began facing roadside bomb attacks in Iraq in the following years, leaving many missing limbs.
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