Algorithm may improve brain-controlled prostheses and exoskeletons

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A team of researchers at the MIT Media Lab has devised an algorithm that promises to vastly improve the simultaneous tracking of any number of magnets. This has significant implications for prostheses, augmented reality, robotics, and other fields.
Algorithm may improve brain-controlled prostheses and exoskeletons
Neuroprosthetics: from sensorimotor to cognitive disorders
Algorithm may improve brain-controlled prostheses and exoskeletons
Block diagram of the proposed method to control prosthetics hands
Algorithm may improve brain-controlled prostheses and exoskeletons
Microprocessor-Controlled Prostheses Are a Step in the Right
Algorithm may improve brain-controlled prostheses and exoskeletons
One brain, two bionic arms - Experience Magazine
Algorithm may improve brain-controlled prostheses and exoskeletons
Teaching brain-machine interfaces as an alternative paradigm to
Algorithm may improve brain-controlled prostheses and exoskeletons
Paralysed man walks again with brain-controlled exoskeleton
Algorithm may improve brain-controlled prostheses and exoskeletons
Brain–computer interface - Wikipedia
Algorithm may improve brain-controlled prostheses and exoskeletons
Brain-Controlled Exoskeleton Enables Paralyzed Patient to Walk
Algorithm may improve brain-controlled prostheses and exoskeletons
Frontiers EEG-Based BCI Control Schemes for Lower-Limb Assistive
Algorithm may improve brain-controlled prostheses and exoskeletons
How to Control a Prosthesis With Your Mind - IEEE Spectrum
Algorithm may improve brain-controlled prostheses and exoskeletons
Hybrid brain/neural interface and autonomous vision-guided whole
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