Stanford University
Showing 4,041-4,060 of 36,299 Results
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Alison Callahan
Research Engineer, Med/BMIR
BioAlison Callahan is a Research Scientist in the Division of Computational Medicine and a Data Scientist on the Stanford Health Care Data Science team. Her current research uses informatics and artificial intelligence to improve rare disease screening. Her work in the SHC Data Science team focuses on developing and implementing methods to assess and identify high value applications of AI in healthcare settings.
Alison holds a master’s degree in information studies from the University of Toronto, and a doctorate in bioinformatics from Carleton University. She completed her postdoctoral training at Stanford. -
Eamonn Callan
Pigott Family School of Education Professor, Emeritus
Current Research and Scholarly InterestsCivic and moral education; ethical and civic dimensions of educational policy; multicultural education and minority rights in education.
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Catherine (Hay) Callas
Ph.D. Student in Energy Resources Engineering, admitted Spring 2020
BioCatherine Callas is a Ph.D. candidate in the Benson Lab in Energy Resources Engineering. She is an ExxonMobil Emerging Energy Fellow, and her research is focused on offshore carbon capture and sequestration in the Gulf Coast. She obtained her M.S. degree in the Atmosphere and Energy program within Civil and Environmental Engineering from Stanford University and a B.S. degree in Chemical Engineering from Brown University. Before attending Stanford, she worked as a Financial Analyst within the Fixed Income group at Goldman Sachs in New York City for three years. She was a Schneider Fellow at the Natural Resources Defense Council in San Francisco where she analyzed the impact of the 2017 Northern California wildfires and 2018 Camp Fire on retail rates within PG&E’s service territory.
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Michele Calos
Professor of Genetics, Emerita
Current Research and Scholarly InterestsMy lab is developing innovative gene and stem cell therapies for genetic diseases, with a focus on gene therapy and regenerative medicine.
We have created novel methods for inserting therapeutic genes into the chromosomes at specific places by using homologous recombination and recombinase enzymes.
We are working on 3 forms of muscular dystrophy.
We created induced pluripotent stem cells from patient fibroblasts, added therapeutic genes, differentiated, and engrafted the cells. -
Paige Calvert
Clinical Instructor (Affiliated), Pediatrics - Genetics
BioPreferred Email: paige.calvert@hhs.sccgov.org