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- A 59-year-old stroke survivor regained left-hand function after receiving an investigational brain implant delivering plasticity-inducing cortical stimulation at UW Medicine. - The patient, paralyzed in his left arm since 2021, can now play piano scales, chop vegetables, zip his jacket, and tie his shoes after three months of combined therapy. - Researchers have implanted the device in a third patient and plan to seek FDA guidance after four participants to expand the study's reach. - The team believes this approach may also benefit patients with spinal cord injuries, traumatic brain injuries, and movement disorders like Parkinson's disease.
- The University of Washington is enrolling volunteers in the BEETHOVEN study, a Phase 3 trial testing an investigational Clostridioides difficile vaccine for adults 65 and older at increased risk of infection. - The multi-site trial involves 129 locations across the United States and other countries, with participants receiving two vaccine doses and being monitored for up to three and a half years. - C. diff is a leading cause of healthcare-acquired infections that can cause severe diarrhea, hospitalization, and life-threatening complications, particularly affecting older adults with recent antibiotic use or frequent healthcare exposure. - The vaccine aims to address a significant unmet medical need by preventing C. diff infections in vulnerable populations who face this "dreaded complication" of hospital stays and antibiotic treatments.
- Proprio's Paradigm platform receives FDA clearance for intraoperative measurements, enabling surgeons to measure success in real-time during procedures without radiation exposure at institutions including Duke Health and UW Medicine. - Medivis secures FDA 510(k) clearance for its Spine Navigation platform, which combines augmented reality and AI to provide holographic navigation across open and minimally invasive spine procedures. - These AI-powered surgical technologies represent significant advancements in spine surgery, offering improved precision, reduced radiation exposure, and real-time data-driven insights for better patient outcomes.