Stanford University


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  • Melissa Ann Vogelsong

    Melissa Ann Vogelsong

    Clinical Associate Professor, Anesthesiology, Perioperative and Pain Medicine

    BioDr. Vogelsong is a Clinical Associate Professor at Stanford University where she is involved in clinical work, education, and research. She completed her residency and dual fellowship training in Adult Cardiothoracic Anesthesia and Critical Care Medicine at Stanford and now attends in the Cardiovascular Intensive Care Unit (CVICU), Medical ICU, and cardiac ORs. This clinical work continuously reveals the ability of modern medicine to overcome seemingly insurmountable injury and illness, yet she believes that optimal care helps a patient to return to the highest level of functioning possible. Thus her research centers around finding ways to optimize the care of critically ill patients, particularly those supported on mechanical circulatory support and those who have suffered cardiac arrest. She has received funding from the Zoll Foundation and is actively engaged with the American Heart Association and Extracorporeal Life Support Organization.

    Additionally, Dr. Vogelsong serves as Associate Medical Director for Life Flight, Stanford's air medical transport service and the only hospital-based flight program in California. She is actively engaged in efforts to enhance the provision of critical care within Stanford Hospital, and serves on multiple committees including the Medical Emergency Response Committee (MERC), ECMO Task Force, and CVICU Continuous Quality Improvement group.

    When not at work, Dr. Vogelsong is a huge fan of life in California and can often be found hiking, on a mountain bike, in her Sprinter van, or talking to her many goats, llamas, and horses.

  • Nirali Vora

    Nirali Vora

    Clinical Professor, Adult Neurology

    BioDr. Nirali Vora is a Clinical Professor of Neurology and Neurological sciences at Stanford University. She is board certified in Adult Neurology and Vascular Neurology after completing her residency and advanced fellowship training at Stanford. She provides comprehensive care for all stroke patients, as well as hospitalized adults with acute or undiagnosed neurological conditions. She specializes in treating vascular disorders including TIA, vasculitis, dissection, venous thrombosis, and undetermined or “cryptogenic” causes of stroke.

    Dr. Vora directs the Stanford Global Health Neurology program, through which she collaborated to start the first stroke unit in Zimbabwe and gained experience in HIV neurology and other neuro-infectious diseases. Additional research interests include stroke prevention, TIA triage, eliminating disparities in health care, and neurology education. She is also the Director of the Stanford Adult Neurology Residency Program.

  • Shannon Walters

    Shannon Walters

    Executive Technical Director, Radiology - Diagnostic Radiology

    Current Role at StanfordI consider myself an innovation enabler and workflow optimization enthusiast. At Stanford 3D and Quantitative Imaging Lab, I work closely with healthcare providers, researchers, and educators to enable effective health visualization. Recent innovations are of particular interest to me; such as 3D Printing, immersive volumetric visualization, clinical implementation of validated AI algorithms, and the general concept of reporting concise changes over time.

  • Adam Wang

    Adam Wang

    Assistant Professor of Radiology (Radiological Sciences Laboratory) and, by courtesy, of Electrical Engineering

    BioMy research group develops technologies for advanced x-ray and CT imaging, including artificial intelligence for CT acquisition, reconstruction, and image processing; spectral imaging, including photon counting CT (PCCT) and dual-layer flat-panel detectors; novel system and detector designs; and their applications in diagnostic imaging and image-guided procedures. I am also the Director of the Photon Counting CT Lab, Zeego Lab, and Tabletop X-Ray Lab.

    I completed my PhD in Electrical Engineering at Stanford, developing strategies for maximizing the information content of dual energy CT and photon counting detectors. I then pursued a postdoctoral fellowship at Johns Hopkins in the I-STAR Lab, developing reconstruction and registration methods for x-ray based image-guided surgery. I was then a Senior Scientist at Varian Medical Systems, developing x-ray/CT methods for image-guided radiation therapy, before returning to Stanford in 2018, where I now lead a comprehensive research program in advanced x-ray and CT imaging systems and methods, with funding from NIH, DOD, DOE, and industry partners.

  • Paul  J. Wang, MD

    Paul J. Wang, MD

    John R. and Ai Giak L. Singleton Director, Professor of Medicine (Cardiovascular Medicine) and, by courtesy, of Bioengineering

    Current Research and Scholarly InterestsDr. Wang's research centers on the development of innovative approaches to the treatment of arrhythmias, including more effective catheter ablation techniques, more reliable implantable devices, and less invasive treatments. Dr. Wang's clinical research interests include atrial fibrillation, ventricular tachycardia, syncope, and hypertrophic cardiomyopathy. Dr. Wang is committed to addressing disparities in care and is actively involved in increasing diversity in clinical trials.

  • Shan X. Wang

    Shan X. Wang

    Leland T. Edwards Professor in the School of Engineering and Professor of Electrical Engineering and, by courtesy, of Radiology (Molecular Imaging Program at Stanford)

    Current Research and Scholarly InterestsShan Wang was named the Leland T. Edwards Professor in the School of Engineering in 2018. He directs the Center for Magnetic Nanotechnology and is a leading expert in Edge AI, biosensors, information storage and spintronics. His research and inventions span across a variety of areas including Edge AI, magnetic biochips, in vitro diagnostics, cancer biomarkers, magnetic nanoparticles, magnetic sensors, magnetoresistive random access memory, and magnetic integrated inductors.

  • Tao Wang (王韬)

    Tao Wang (王韬)

    Director of Precision Diabetes Care, Genetics

    Current Role at StanfordPrincipal Investigator, AI for Precision Diabetes Management
    Project Manager & Scientific Co-lead, PsychENCODE Project
    Project Initiator & Clinical Co-lead, Long COVID Clinical RCT with TCM
    Project Initiator & Manager, AI & Wearables Toolkit for Biomedical Sciences
    ENCODE and PsychENCODE Project Data Manager
    Research Scientist, US Veteran Affairs Hospital
    SCGPM HPC System Administrator

  • Ann Weinacker

    Ann Weinacker

    Professor of Medicine (Pulmonary and Critical Care)
    On Leave from 2026-09-08 To 2027-09-07

    Current Research and Scholarly InterestsDr. Weinacker's research interests center around ICU outcomes. Her specific interests include primary graft dysfunction in lung transplant recipients.

  • Irving Weissman

    Irving Weissman

    Virginia & D.K. Ludwig Professor of Clinical Investigation in Cancer Research, Professor of Pathology, and of Developmental Biology

    Current Research and Scholarly InterestsStem cell and cancer stem cell biology; development of T and B lymphocytes; cell-surface receptors for oncornaviruses in leukemia. Hematopoietic stem cells; Lymphocyte homing, lymphoma invasiveness and metastasis; order of events from hematopoietic stem cells [HSC] to AML leukemia stem cells and blood diseases, and parallels in other tissues; discovery of tumor and pathogenic cell 'don't eat me' and 'eat me' signals, and translation into therapeutics.

  • Chad S. Weldy, M.D., Ph.D.

    Chad S. Weldy, M.D., Ph.D.

    Assistant Professor of Medicine (Cardiovascular Medicine)

    Current Research and Scholarly InterestsThe Weldy Lab studies how human genetic variation drives vascular dysfunction, inflammation, and cardiovascular disease. We integrate human genetics, epigenetics, single-cell genomics, RNA biology, and experimental models to define causal mechanisms and identify new therapeutic opportunities.

    Led by Chad S. Weldy, MD, PhD, the lab focuses on questions at the intersection of cardiovascular genetics, vascular biology, and RNA-mediated regulation, with particular interest in smooth muscle cell phenotypic modulation, innate immune signaling, and mechanisms of disease susceptibility governed by epigenetic memory.

    Our work is grounded in the idea that genetic discovery can do more than identify risk. It can reveal the biology that matters most and point toward more precise strategies for prevention and treatment.

    https://weldylab.org/

  • Gerlinde Wernig

    Gerlinde Wernig

    Associate Professor of Pathology

    Current Research and Scholarly InterestsFibrotic diseases kill more people than cancer in this country and worldwide. We believe that scar-forming cells called fibroblasts are at the core of the fibrotic response in parenchymal organ fibrosis in the lung, liver, skin, bone marrow and tumor stroma. At the cellular level we think of fibrosis as a step wise process which implicates inflammation and fibrosis. We seek to identify new effective immune therapy targets to treat fibrotic diseases.

  • Marius Wernig

    Marius Wernig

    Professor of Pathology and, by courtesy, of Chemical and Systems Biology

    Current Research and Scholarly InterestsEpigenetic Reprogramming, Direct conversion of fibroblasts into neurons, Pluripotent Stem Cells, Neural Differentiation: implications in development and regenerative medicine

  • Cornelia Weyand

    Cornelia Weyand

    Professor of Medicine (Immunology and Rheumatology), Emerita

    Current Research and Scholarly InterestsAutoimmunity
    Chronic inflammatory disease
    Metabolic control of immune function

  • Matthew T. Wheeler

    Matthew T. Wheeler

    Associate Professor of Medicine (Cardiovascular Medicine)

    Current Research and Scholarly InterestsTranslational research in rare and undiagnosed diseases. Basic and clinical research in cardiomyopathy genetics, mechanisms, screening, and treatment. Investigating novel agents for treatment of hypertrophic cardiomyopathy and new mechanisms in heart failure. Cardiovascular screening and genetics in competitive athletes, disease gene discovery in cardiomyopathy and rare disease. Informatics approaches to rare disease and multiomics. Molecular transducers of physical activity bioinformatics.