Stanford University
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Percy Liang
Professor of Computer Science
BioPercy Liang is an Associate Professor of Computer Science at Stanford University (B.S. from MIT, 2004; Ph.D. from UC Berkeley, 2011) and the director of the Center for Research on Foundation Models (CRFM). He is currently focused on making foundation models (in particular, language models) more accessible through open-source and understandable through rigorous benchmarking. In the past, he has worked on many topics centered on machine learning and natural language processing, including robustness, interpretability, human interaction, learning theory, grounding, semantics, and reasoning. He is also a strong proponent of reproducibility through the creation of CodaLab Worksheets. His awards include the Presidential Early Career Award for Scientists and Engineers (2019), IJCAI Computers and Thought Award (2016), an NSF CAREER Award (2016), a Sloan Research Fellowship (2015), a Microsoft Research Faculty Fellowship (2014), and paper awards at ACL, EMNLP, ICML, COLT, ISMIR, CHI, UIST, and RSS.
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Richard Liang
MD Student with Scholarly Concentration in Health Services & Policy Research / Global Health, expected graduation Spring 2026
Ph.D. Student in Epidemiology and Clinical Research with Scholarly Concentration in Health Services & Policy Research / Global Health, admitted Autumn 2022
MSTP Student
Master of Arts Student in East Asian Studies, admitted Spring 2024Current Research and Scholarly InterestsPrimary research interests include:
- applications of advanced epidemiological methods
- life course health and social epidemiology
- bridging population health and basic science research
Clinical & health services research topics have included:
- maternal/child health
- geriatrics/aging
- dermatology, particularly inflammatory skin diseases
Google Scholar Profile: https://scholar.google.com/citations?user=WtCbIZAAAAAJ -
Xing Liang
Basic Life Res Scientist
Current Research and Scholarly InterestsMechanism of MT polarity establishment during PVD neuron dendrite outgrowing in C. elegans.