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Nature Communications

2 entries
July 2026

Carnegie Mellon's Sensory-Guided Training Speeds Motor Imagery BCI Learning

Carnegie Mellon University researchers report a sensory-guided joint learning framework that pairs human motor learning with adaptive machine learning to train motor imagery BCI users. Across 31 BCI-naive participants, average online discrete accuracy was 86.0% in one dimension and 77.5% in two, with continuous control accuracy at 77.5% and 66.9% respectively; tactile guidance reduced how much users had to explore and accelerated neural adaptation, while sample reweighting kept decoder updates aligned with the learner's own trajectory. The authors frame the approach as a shift from passive calibration to active human-machine joint learning; the study appears in Nature Communications.
April 2026

Ultra-Flexible Arrays Record 719 Single Neurons in 11 Surgical Patients

A Nature Communications study tested ultra-Flexible Implantable Neural Electrode arrays during awake surgery in 16 patients. Valid single-unit recordings were obtained in 11 patients, yielding 719 isolated neurons and as many as 135 simultaneously, while five early cases failed because of operating-room noise or damaged insertion needles. The work was intraoperative and does not establish long-term implant performance.
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