School of Medicine


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  • Pourya Yarahmadi, MD

    Pourya Yarahmadi, MD

    Postdoctoral Scholar, Cardiovascular Institute

    BioI earned my MD from Tehran University of Medical Sciences. Currently, I am a postdoctoral researcher in Dr. Nguyen’s lab, and my main focus is on how the immune system contributes to the development of cardiovascular diseases, particularly atherosclerosis. I use cutting-edge technologies such as single-cell RNA sequencing to explore the complex interactions between immune cells and the vascular system. Outside of work, I enjoy playing soccer, working out, hiking, and spending time with friends.

  • Alan Yeung, MD

    Alan Yeung, MD

    Li Ka Shing Professor in Cardiology

    Current Research and Scholarly InterestsCoronary artery disease is the leading cause of death in men and women in the United States. Our group is interested in studying both the early and late phases of atherosclerosis so that we can better develop prevention and treatment strategies.

  • Paul Yock, MD

    Paul Yock, MD

    Martha Meier Weiland Professor in the School of Medicine and Professor of Bioengineering, Emeritus

    Current Research and Scholarly InterestsHealth technology innovation using the Biodesign process: a systematic approach to the design of biomedical technologies based on detailed clinical and economic needs characterization. New approaches for interdisciplinary training of health technology innovators, including processes for identifying value opportunities in creating new technology-based approaches to health care.

  • Celina Yong, MD, MBA, MSc

    Celina Yong, MD, MBA, MSc

    Associate Professor of Medicine (Cardiovascular Medicine)

    BioCelina Yong, MD, MBA, MSc, FACC, FAHA, FSCAI, is an Associate Professor in the Stanford School of Medicine and Director of Interventional Cardiology at the VA Palo Alto Medical Center. Dr. Yong leads an active health services research lab focused on using large database analyses and novel scalable approaches to improve the quality of cardiovascular care. In her clinical practice, Dr. Yong performs complex percutaneous coronary interventions and transcatheter aortic valve replacements. She is actively involved in clinical trials of novel device and drug therapies for cardiovascular disease. She serves as an Associate Editor for the Journal of the American College of Cardiology and leads the VA-Cardiovascular Trials Consortium. She has co-authored national guidelines and scientific statements, including the ACC/AHA/SCAI Coronary Revascularization Guidelines.

    Prior to joining the Stanford faculty, Dr. Yong completed an MSc in Health Policy, Planning and Financing from the London School of Economics and MBA from Oxford as a Marshall Scholar. She completed her MD at Stanford, followed by internal medicine residency at University of California, San Francisco and cardiology and interventional cardiology fellowships at Stanford, including serving as Chief Fellow.

  • Roham Zamanian

    Roham Zamanian

    Professor of Medicine (Pulmonary and Critical Care Medicine)

    Current Research and Scholarly Interests1. Development and evaluation of prognostic and diagnostic integral biomarkers in PAH.

    2. Prevalence and Treatment of Insulin Resistance in PAH.

    3. Role of inflammation and proteomic signature in PAH

    4. Development of novel therapeutics (bench to bedside) including FK506 & Elastase Inhibition in PAH.

    5. Assessment of Vasoreactivity (gain and loss) in pulmonary arterial hypertension

    6. Assessment of microvascular function in PAH.

  • Richard Zare

    Richard Zare

    Marguerite Blake Wilbur Professor of Natural Science and Professor, by courtesy, of Physics

    Current Research and Scholarly InterestsMy research group is exploring a variety of topics that range from the basic understanding of chemical reaction dynamics to the nature of the chemical contents of single cells.

    Under thermal conditions nature seems to hide the details of how elementary reactions occur through a series of averages over reagent velocity, internal energy, impact parameter, and orientation. To discover the effects of these variables on reactivity, it is necessary to carry out studies of chemical reactions far from equilibrium in which the states of the reactants are more sharply restricted and can be varied in a controlled manner. My research group is attempting to meet this tough experimental challenge through a number of laser techniques that prepare reactants in specific quantum states and probe the quantum state distributions of the resulting products. It is our belief that such state-to-state information gives the deepest insight into the forces that operate in the breaking of old bonds and the making of new ones.

    Space does not permit a full description of these projects, and I earnestly invite correspondence. The following examples are representative:

    The simplest of all neutral bimolecular reactions is the exchange reaction H H2 -> H2 H. We are studying this system and various isotopic cousins using a tunable UV laser pulse to photodissociate HBr (DBr) and hence create fast H (D) atoms of known translational energy in the presence of H2 and/or D2 and using a laser multiphoton ionization time-of-flight mass spectrometer to detect the nascent molecular products in a quantum-state-specific manner by means of an imaging technique. It is expected that these product state distributions will provide a key test of the adequacy of various advanced theoretical schemes for modeling this reaction.

    Analytical efforts involve the use of capillary zone electrophoresis, two-step laser desorption laser multiphoton ionization mass spectrometry, cavity ring-down spectroscopy, and Hadamard transform time-of-flight mass spectrometry. We believe these methods can revolutionize trace analysis, particularly of biomolecules in cells.

  • Christopher K. Zarins

    Christopher K. Zarins

    Walter Clifford Chidester and Elsa Rooney Chidester Professor of Surgery, Emeritus

    Current Research and Scholarly InterestsHemodynamic factors in atherosclerosis, pathogenesis of, aortic aneurysms, carotid plaque localization and complication, anastomotic intimal hyperplasia, vascular biology of artery wall, computational fluid dynamics as applied to blood flow and vascular disease.