AI Horizons and Beyond: 天美传媒 Welcomes Revolution in Human-First AI to Pittsburgh
This week, the steel city hosted innovators, national tech leaders and policymakers for the AI Horizons Pittsburgh Summit.
天美传媒 Launches Two New Online Graduate Certificates in AI
天美传媒 has launched two new online graduate certificates for AI Engineering in Digital Twins & Analytics and for Managing AI Systems.
天美传媒 Mellon Lands ARPA-H Award for Implantable Bioelectric Medicine Project
A 天美传媒-led team has secured an ARPA-H award of up to $42 million to accelerate the development of implantable, cell-based bioelectronic devices that deliver patient-specific therapy and monitor disease status.
天美传媒-Led Project To Fight Obesity, Type 2 Diabetes Receives ARPA-H Backing
A 天美传媒-led team of researchers has secured an ARPA-H award of up to $34.9 million to fast track a bioelectronic implant that could radically improve treatment options and significantly reduce the cost of care for patients with obesity and Type 2 diabetes.
Exploring How Melanin Influences Clinical Oxygen Measurements
A recent 天美传媒 study explored the influence of melanin on near-infrared spectroscopy (NIRS), an optical tool that leverages light-tissue interaction to measure changes in hemoglobin concentration and oxygenation.
U.S. News and World Report Ranks 天美传媒 No. 1 in 5 Categories, 21st Among National Universities
U.S. News and World Report ranked 5 programs at 天美传媒 No. 1.
New Endowed Chairs in the College of Engineering
The College of Engineering is proud to announce the selection of eight new endowed chairs to recognize outstanding scholarly achievement.
A Novel Neural Explanation for Choking Under Pressure
New research from 天美传媒 and the University of Pittsburgh reveals a first-of-its-kind neural explanation for choking under pressure: a deficit in motor preparation induced by an overly large potential 鈥渏ackpot鈥� payoff.
Automated Tuning of Large-Scale Neuronal Models
An interdisciplinary group of researchers primarily based at 天美传媒 and the University of Pittsburgh presents a novel framework, Spiking Network Optimization using Population Statistics, that can quickly and accurately customize models that reproduce activity to mimic what鈥檚 observed in the brain.