School of Medicine
Showing 1-20 of 33 Results
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Aaron Brown
Science Engineering Associate 3, Cardiothoracic Surgery - Pediatric Cardiac Surgery
Current Research and Scholarly InterestsEngineering research with applications to energy/environmental sustainability.
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Andrew Y. Chang, MD, MS(Epi)
Member (Postdoc), Cardiovascular Institute
Current Research and Scholarly InterestsMy research interests center around the epidemiology, environmental determinants, and health services dimensions of heart disease, with an emphasis on vulnerable populations, both international and domestic. Current projects include the development of novel care quality metrics for use in rheumatic heart disease in East Africa, testing of low sodium salt substitutes in South Asia, and describing the cardiovascular impacts of cyclical climate change-associated major environmental events.
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Francisco Galdos
Affiliate, Department Funds
Fellow in Pediatrics - CardiologyBioFrancisco earned his undergraduate degree in Human Developmental and Regenerative Biology from Harvard University, graduating magna cum laude. He subsequently completed his MD/PhD at Stanford University School of Medicine. During his doctoral training under the mentorship of Dr. Sean Wu, Francisco published one of the first comprehensive maps of human cardiac cell development using pluripotent stem cell-based models. His research contributed to the development of machine learning tools and genetic tracing systems that identified and characterized human left ventricular cardiomyocytes in vitro, enabling the modeling of left ventricular development in hypoplastic left heart syndrome. Francisco has authored multiple first-author publications and has been awarded funding from both internal sources and the NIH (F30, T32). He has received numerous accolades for his work, including the prestigious Harold Weintraub Award, and has presented his research at various national conferences. As part of the accelerated research pathway at Stanford, Francisco is focused on the genetic and epigenetic mechanisms underlying heart failure and heart development in congenital heart disease, with the ultimate goal of developing novel therapeutics for pediatric patients.
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Fikunwa Kolawole
MD Student with Scholarly Concentration in Bioengineering / Cardiovascular-Pulmonary Sciences, expected graduation Spring 2028
BioFikunwa is a mechanical engineering Ph.D. candidate in the cardiovascular Magnetic Resonance Lab (Ennis Lab) in the Stanford Radiology Department. His research, which is at the intersection between medicine and engineering, is focused on developing mechanics-based clinical biomarkers for heart disease. Through his research, he aims to establish a comprehensively validated and clinically viable tool for estimating in vivo heart tissue stiffness to better understand and manage heart failure.
He began his academic journey as a mechanical engineering undergraduate student at Howard University during which time he also worked as a researcher at the FDA’s department of applied mechanics, characterizing the mechanical response of metals used in implantable cardiovascular devices. At Howard, he also supported research in the Applied Mechanics and Materials Lab and Biosensors Lab, as an undergraduate research assistant. Upon completing his undergraduate studies, in 2019, he joined Stanford University’s mechanical engineering department. He is also affiliated with the Radiology departments at Stanford and the Veterans Administration Palo Alto Health Care System. He is deeply passionate about empowering minority students to pursue STEM careers. Additionally, he is a fellow of the Bio-X, Stanford’s Interdisciplinary biosciences institute -
Priya Nair
Research Asst - Graduate, Rad/Radiological Sciences Laboratory
BioI received my Bachelor's degree in Biomedical Engineering with a minor in Industrial Design from Georgia Institute of Technology in 2020. During my time at Georgia Tech, I worked as an undergraduate researcher in Dr. Ajit Yoganathan's Cardiovascular Fluid Mechanics Lab. My project was focused on studying the contribution of foreign materials to thrombosis in transcatheter aortic valves using an in vitro flow loop. Beyond my research interests, I was also actively involved in the Society of Women Engineers, promoting outreach activities and creating mentorship opportunities for women in STEM.