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Science/Tech
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Title: Thought control of computer via implant
Source: [None]
URL Source: http://www.sciencedaily.com/releases/2011/04/110406192422.htm
Published: Apr 7, 2011
Author: staff
Post Date: 2011-04-09 07:35:02 by Tatarewicz
Keywords: None
Views: 321
Comments: 3

The act of mind reading is something usually reserved for science-fiction movies but researchers in America have used a technique, usually associated with identifying epilepsy, for the first time to show that a computer can listen to our thoughts.

In a new study, scientists from Washington University demonstrated that humans can control a cursor on a computer screen using words spoken out loud and in their head, holding huge applications for patients who may have lost their speech through brain injury or disabled patients with limited movement.

By directly connecting the patient's brain to a computer, the researchers showed that the computer could be controlled with up to 90% accuracy even when no prior training was given.

Patients with a temporary surgical implant have used regions of the brain that control speech to "talk" to a computer for the first time, manipulating a cursor on a computer screen simply by saying or thinking of a particular sound.

"There are many directions we could take this, including development of technology to restore communication for patients who have lost speech due to brain injury or damage to their vocal cords or airway," says author Eric C. Leuthardt, MD, of Washington University School of Medicine in St. Louis.

Scientists have typically programmed the temporary implants, known as brain-computer interfaces, to detect activity in the brain's motor networks, which control muscle movements.

"That makes sense when you're trying to use these devices to restore lost mobility -- the user can potentially engage the implant to move a robotic arm through the same brain areas he or she once used to move an arm disabled by injury," says Leuthardt, assistant professor of neurosurgery, of biomedical engineering and of neurobiology, "But that has the potential to be inefficient for restoration of a loss of communication."

Patients might be able to learn to think about moving their arms in a particular way to say hello via a computer speaker, Leuthardt explains. But it would be much easier if they could say hello by using the same brain areas they once engaged to use their own voices.

The research appears April 7 in The Journal of Neural Engineering.

The devices under study are temporarily installed directly on the surface of the brain in epilepsy patients. Surgeons like Leuthardt use them to identify the source of persistent, medication-resistant seizures and map those regions for surgical removal. Researchers hope one day to install the implants permanently to restore capabilities lost to injury and disease.

Leuthardt and his colleagues have recently revealed that the implants can be used to analyze the frequency of brain wave activity, allowing them to make finer distinctions about what the brain is doing. For the new study, Leuthardt and others applied this technique to detect when patients say or think of four sounds:

* oo, as in few * e, as in see * a, as in say * a, as in hat

When scientists identified the brainwave patterns that represented these sounds and programmed the interface to recognize them, patients could quickly learn to control a computer cursor by thinking or saying the appropriate sound.

In the future, interfaces could be tuned to listen to just speech networks or both motor and speech networks, Leuthardt says. As an example, he suggests that it might one day be possible to let a disabled patient both use his or her motor regions to control a cursor on a computer screen and imagine saying "click" when he or she wants to click on the screen.

"We can distinguish both spoken sounds and the patient imagining saying a sound, so that means we are truly starting to read the language of thought," he says. "This is one of the earliest examples, to a very, very small extent, of what is called 'reading minds' -- detecting what people are saying to themselves in their internal dialogue."

"We want to see if we can not just detect when you're saying dog, tree, tool or some other word, but also learn what the pure idea of that looks like in your mind," he says. "It's exciting and a little scary to think of reading minds, but it has incredible potential for people who can't communicate or are suffering from other disabilities."

The next step, which Leuthardt and his colleagues are working on, is to find ways to distinguish what they call "higher levels of conceptual information."

The study identified that speech intentions can be acquired through a site that is less than a centimetre wide which would require only a small insertion into the brain. This would greatly reduce the risk of a surgical procedure.


Anyone else find his funny?

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#1. To: Tatarewicz (#0)

By directly connecting the patient's brain to a computer, the researchers showed that the computer could be controlled with up to 90% accuracy even when no prior training was given.

==========================================

They sell these now at Best Buy. Installs are done by their Geek Squad right there in the store. Drive in, drive out.

U.S. Constitution - Article IV, Section 4: NO BORDERS + NO LAWS = NO COUNTRY

HAPPY2BME-4UM  posted on  2011-04-09   7:41:10 ET  Reply   Trace   Private Reply  


#2. To: Tatarewicz (#0)

Implants for Dummies will be published shortly.

Somewhere in Kenya, a village is still missing its idiot.

Lod  posted on  2011-04-09   10:57:45 ET  Reply   Trace   Private Reply  


#3. To: HAPPY2BME-4UM (#1)

I would think the brain interface device has greater potential for thought-to-machine transfer than the old mind-spoon bending technique.

ScienceDaily (Nov. 19, 2010) — Using a new brain-computer training approach, 14 volunteers learned in only six minutes how to move a screen cursor with their thoughts. Near-instant feedback helped the people quickly master some of their own brain responses. The findings were presented at Neuroscience 2010, the annual meeting of the Society for Neuroscience, held in San Diego.

Researchers have developed a speedier system that allows people to control a cursor with thought alone. Studies show that when people and animals are given feedback about their brain signals, they can gain some control over those signals. It's now possible to acquire that feedback faster than ever before -- in "real time" -- using functional magnetic resonance imaging (fMRI), which registers blood flow in active brain regions.

"For most of us, most of the time, the ongoing activity of the brain is hidden and not under voluntary control," said lead author Anna Rose Childress, PhD, of the University of Pennsylvania School of Medicine. "Brain feedback studies are changing this long-standing, one-way relationship."

Thought-only cursor control may provide more options for people with "locked-in" syndromes -- in which a person is aware but unable to communicate -- and individuals with brain injuries. Previous trials have also shown that people can learn to control pain using real-time fMRI, and researchers believe this same technique may be applied to other conditions. They theorize that if the structures that underlie these diseases can be controlled, the disease itself can be altered.

The study consisted of two parts: the computer training and the actual cursor control, both inside the MRI scanner. During training, computers learned to recognize two distinct brain patterns in the volunteers. In one, participants were asked to think about hitting a tennis ball. In the second, they imagined moving from one room to another. Each set of thoughts corresponded with activity in specific parts of their brains, which the computer analyzed. The volunteers were then instructed to repeat those same thought patterns and move a screen cursor linked to their brain activity. All the participants were able to move the cursor by alternating their thoughts, creating brain patterns that were quickly recognized by the computer.

Research was supported by the National Institute on Drug Abuse, the National Institute of Biomedical Imagine and Bioengineering, and the U.S. Department of Veterans Affairs' Mental Illness Research, E

Tatarewicz  posted on  2011-04-10   2:24:42 ET  Reply   Trace   Private Reply  


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