Technology Machine Learning for Early Detection of Hypoxic‑Ischemic Brain Injury After Cardiac Arrest Despite the many advances in the field of resuscitation post cardiac arrest, hypoxic-ischemic brain injury (HIBI) leaves many survivors with severe neurological disability. Patients who remain comatose at 24–72 h…
News AI Helps to Earlier Detect Brain Injury in Survivors of Cardiac Arrest University of Chicago researchers have developed a patent-pending technique using deep learning, a form of artificial intelligence (AI), to better assess hypoxic-ischemic brain injury in survivors of cardiac arrest. Over...
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News 22 Teams From Across Campus Explore Commercial Potential of New Ideas More than 20 teams participated in the Polsky Center I-Corps program this academic year – all with new research and ideas addressing challenges across various industries. The goal of the...
News UChicago Researchers Honored with Prestigious Innovation Awards University of Chicago Assistant Professor Chibueze Amanchukwu and PhD candidates Pengju Li and Shawn Shan were recently recognized for their groundbreaking innovations. Shawn Shan, 26, has been named MIT Technology...
Technology New Class of Biocompatible and Flexible Optoelectronic Devices For Next Generation Pacemakers Electrode-based electrical stimulation underpins several clinical bioelectronic devices, including deep brain stimulators and cardiac pacemakers. Pacemaker therapy improves quality of life and reduces mortality rates. Despite significant advances, current pacemaker…
Technology Next-Generation Minimally Invasive Optoelectronic Implants For Chronic Disease Management The platform delivers ultra-low intensity, wireless, fully implantable photostimulation for deep tissue targets (nerves, heart, diaphragm). It spatially separates light harvesting from bioelectrical stimulation, enabling minimally invasive, leadless, genetic-modification-free interventions.…