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electroencephalography

Diagnosing autism with MEG imaging

Because children with autism spectrum disorders tend to process sound and language a fraction of a second slower than children without the disorders, researchers have discovered that measuring magnetic signals that mark this kind of delayed response has the potential to become a standardized tool for diagnosing autism.

"More work needs to be done before this can become a standard tool, but this pattern of delayed brain response may be refined into the first imaging biomarker for autism," said Dr. Timothy P.L. Roberts, vice chairman of Radiology Research at The Children's Hospital of Philadelphia and head … Read more

Toyota thinks up mind-reading wheelchair

Last week, we told you about Mindflex, a Mattel toy that lets players move objects with their brains. This week comes word that the same technology is making its way into a more functional application--a wheelchair that users can maneuver with thought alone.

Toyota has developed the wheelchair in collaboration with researchers in Japan. The system analyzes brain wave data using signal-processing technology and delivers neuro-feedback to the driver.

Brain wave-detecting technology, or electroencephalography (EEG), isn't new. In layman's terms, a device, usually a cap wired with sensors, detects a person's brain waves. That information is analyzed by a computer and applied to the device in question. Scientists have pursued the technology for decades, but have had difficulty achieving short response times, explains the Associated Press.

Toyota's mind-controlled wheelchair, however, has what appears to be the quickest response time yet: 125 milliseconds, or 125 thousandths of a second. The user can almost instantly steer right, left, and forward. To stop, the person in the chair must puff up a cheek, a motion that's then detected by the headpiece.

Because of this quick response time, plans are under way to turn the wheelchair into a commercial health care product. The most practical use would be for rehabilitation patients who have been paralyzed, suffered a stroke, or have other conditions that hinder their muscle control. So far, the research has centered on brain waves related to imaginary hand and foot control. However, Toyota hopes the system could ultimately be applied to brain waves generated by emotions. … Read more