Stanford University
Showing 1,241-1,250 of 1,814 Results
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Britni Wilcher
Affiliate, Health Policy
Visiting Scholar, Health PolicyBioBritni Wilcher, PhD, is a Visiting Scholar in the Department of Health Policy at Stanford University and an applied microeconomist working at the intersection of health, labor, and gender economics. Dr. Wilcher's research focuses on the economics of health decision making and its implications for labor markets using quasi-experimental designs. Her research portfolio spans vulnerable populations and policy interventions, from evaluating teletherapy adoption patterns among 200,000+ veterans to conducting regulatory impact analyses protecting 22+ million workers nationwide. Her collaborative research products have withstood judicial review up to the Supreme Court and provided evidence-based input into policy actions. Her work has been cited in congressional testimony and the 2022 Economic Report of the President. It has been featured in federal regulations and published in peer-reviewed journals including Labour Economics, Health Economics, Value in Health, and the International Journal of Technology Assessment in Health Care.
Dr. Wilcher has worked in management consulting, government, universities, and has consulted with think tanks, foundations, the EU Commission, and a United Nations entity. She holds a PhD in Economics from American University, an MSc in International Health Care Management, Economics, and Policy from SDA Bocconi School of Management, and a BA in Economics from Spelman College. -
Laura Graham
Other Teaching Staff-Hourly, Surgery
BioI am an epidemiologist and health services researcher with nearly 20 years of experience in surgical outcomes research. My work focuses on improving healthcare delivery and outcomes for Veterans and other vulnerable populations, particularly those who are older or medically complex. Using large administrative datasets from the Veterans Health Administration (VA), I study surgical processes and outcomes to inform system-level improvements.
With postdoctoral training in health economics and implementation science, I bring expertise in causal inference methodology and artificial intelligence, particularly the use of natural language processing (NLP). I apply these methods to extract insights from unstructured clinical data and to strengthen causal analyses in complex healthcare datasets. These approaches allow me to address research questions that were previously difficult to study with standard empirical approaches.
As a collaborative leader, I have mentored junior investigators and worked across academic and industry sectors to advance health services research. My goal is to translate evidence into practice, ultimately improving the quality of surgical care for Veterans. -
Peter Graham
Wells Family Director of the Stanford Institute for Theoretical Physics and Dr. William S. & Carol A. Davies Professor of Physics
Current Research and Scholarly InterestsWhat physics lies beyond the Standard Model and how can we discover it?
Professor Graham is broadly interested in theoretical physics beyond the Standard Model which often involves cosmology, astrophysics, general relativity, and even atomic physics. The Standard Model leaves many questions unanswered including the nature of dark matter and the origins of the weak scale, the cosmological constant, and the fundamental fermion masses. These clues are a guide to building new theories beyond the Standard Model. He recently proposed a new solution to the hierarchy problem which uses dynamical relaxation in the early universe instead of new physics at the weak scale.
Professor Graham is also interested in inventing novel experiments to discover such new physics, frequently using techniques from astrophysics, condensed matter, and atomic physics. He is a proposer and co-PI of the Cosmic Axion Spin Precession Experiment (CASPEr) and the DM Radio experiment. CASPEr uses nuclear magnetic resonance techniques to search for axion dark matter. DM Radio uses high precision magnetometry and electromagnetic resonators to search for hidden photon and axion dark matter. He has also proposed techniques for gravitational wave detection using atom interferometry.
Current areas of focus:
Theory beyond the Standard Model
Dark matter models and detection
Novel experimental proposals for discovering new physics such as axions and gravitational waves
Understanding results from experiments ranging from the LHC to early universe cosmology