School of Medicine


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  • Hua Tang

    Hua Tang

    Professor of Genetics and, by courtesy, of Statistics

    Current Research and Scholarly InterestsDevelop statistical and computational methods for population genomics analyses; modeling human evolutionary history; genetic association studies in admixed populations.

  • Jean Y. Tang MD PhD

    Jean Y. Tang MD PhD

    Professor of Dermatology
    On Partial Leave from 10/07/2024 To 10/06/2025

    Current Research and Scholarly InterestsMy research focuses on 2 main areas:

    1. Skin cancer:
    - New therapeutics to treat and prevent non-melanoma skin cancer, especially by targeting the Hedgehog signaling pathway for BCC tumors
    - Genomic analysis of drug-resistant cancers
    - Identifying risk factors for skin cancer in the Women's Health Initiative

    2. Epidermolysis Bullosa: gene therapy and protein therapy to replace defective/absent Collagen 7 in children and adults with Recessive Dystrophic EB

  • Paul C Tang

    Paul C Tang

    Other Teaching Staff-Hourly, Medicine - Primary Care and Population Health

    BioDr. Tang is Adjunct Professor in the Clinical Excellence Research Center at Stanford University and a practicing internist at the Palo Alto Medical Foundation. Most recently, he was Vice President, Chief Health Transformation Officer at IBM Watson Health. He has served in executive administration roles in health systems for over 25 years. Prior to joining Watson Health, Dr. Tang was Vice President, Chief Innovation and Technology Officer at the Palo Alto Medical Foundation (PAMF), directing the David Druker Center for Health Systems Innovation, a disruptive innovation center focused on grand challenges in health. Dr. Tang led one of the earliest implementations of an Electronic Health Record (EHR) system in the country in 1996, and in 2000, he co-developed MyChart, the first commercial patient portal, with Epic.

    Dr. Tang is an elected member of the National Academy of Medicine, and has served on numerous NAM study committees, including a patient-safety committee he chaired that published two reports: Patient Safety: A New Standard for Care, and Key Capabilities of an Electronic Health Record System. He is a member of the Health and Medicine Division committee of the National Academies of Science, Engineering, and Medicine. Dr. Tang was co-chair of the federal Health Information Technology Policy committee from 2009-2017. He has served as board chair for several health informatics professional associations, including the American Medical Informatics Association (AMIA). He has served on the boards of AMIA, National Quality Forum, AcademyHealth, Computer-based Patient Record Institute, Joint Health Information Technology Alliance, NAM Board on Health Care Services, and National eHealth Collaborative. Dr. Tang is a recipient of the Nicholas E. Davies Award for Excellence in Computer-based Patient Record System Implementation, and the AMIA Don E. Detmer Award for Health Policy Contributions in Informatics. He currently holds one patent and has 16 patents pending. He has published numerous papers in medical informatics, appearing in New England Journal of Medicine, JAMA, Health Affairs, Annals of Internal Medicine, and Journal of the American Medical Informatics Association. Dr. Tang is a Fellow of the American College of Physicians, the American College of Medical Informatics, the College of Healthcare Information Management Executives, and the Healthcare Information and Management Systems Society.

    He received his B.S. and M.S. in Electrical Engineering from Stanford University and his M.D. from the University of California, San Francisco. He completed his residency in internal medicine at Stanford University and is a board-certified practicing internist at the Palo Alto Medical Foundation.

  • Sindy Tang

    Sindy Tang

    Associate Professor of Mechanical Engineering, Senior Fellow at the Woods Institute for the Environment and Professor, by courtesy, of Radiology and of Bioengineering

    Current Research and Scholarly InterestsThe long-term goal of Dr. Tang's research program is to harness mass transport in microfluidic systems to accelerate precision medicine and material design for a future with better health and environmental sustainability.

    Current research areas include: (I) Physics of droplets in microfluidic systems, (II) Interfacial mass transport and self-assembly, and (III) Applications in food allergy, single-cell wound repair, and the bottom-up construction of synthetic cell and tissues in close collaboration with clinicians and biochemists at the Stanford School of Medicine, UCSF, and University of Michigan.

    For details see https://web.stanford.edu/group/tanglab/

  • Sami Gamal-Eldin Tantawi

    Sami Gamal-Eldin Tantawi

    Professor of Particle Physics and Astrophysics, Emeritus

    BioFor over a decade I have advocated for dedicated research efforts on the basic physics of room temperature high gradient structures and new initiatives for the associated RF systems. This required demanding multidisciplinary collaboration to harness limited resources. The basic elements of the research needed to be inclusive to address not only the fundamentals of accelerator structures but also the fundamentals of associated technologies such as RF manipulation and novel microwave power sources. These basic research efforts were not bundled with specific developments for an application or a general program. The emerging technologies promise a broad, transformational impact.

    With this underlying philosophy in mind, in 2006 the US High Gradient Research Collaboration for which I am the spokesman was formed. SLAC is the host of this collaboration, which comprises MIT, ANL, University of Maryland and University of Colorado, NRL and a host of SBIR companies. This led to the revitalization of this research area worldwide. The international collaborative effort grew to include KEK in Japan, INFN, Frascati in Italy, the Cockcroft Institute in the UK, and the CLIC team at CERN.

    This effort led to a new understanding of the geometrical effects affecting high gradient operations. The collaborative work led to new advances in understanding the gradient limits of photonic band gap structures. Now we have a new optimization methodology for accelerator structure geometries and ongoing research on alternate and novel materials. These efforts doubled the usable gradient in normal conducting high gradient linacs to more than 100 MV/m, thus revitalizing the spread of the technology to other applications including compact Inverse Compton Scattering gamma-ray sources for national security applications, and compact proton linacs for cancer therapy.

  • Chris Tarver, MD, FAAPMR

    Chris Tarver, MD, FAAPMR

    Clinical Assistant Professor, Orthopaedic Surgery
    Clinical Assistant Professor (By courtesy), Neurosurgery
    Clinical Assistant Professor (By courtesy), Neurology & Neurological Sciences

    BioDr. Tarver is board-certified in Physical Medicine and Rehabilitation and Brain Injury Medicine, with an emphasis on stroke rehabilitation. He is also a clinical assistant professor in the Department of Orthopaedic Surgery and a clinical assistant professor (by courtesy) in the Department of Neurosurgery and the Department of Neurology & Neurological Sciences at Stanford University School of Medicine. Dr. Tarver completed a PM&R residency at Loma Linda University Health. Prior to that, he received his Bachelor of Science in Biomedical Engineering and Doctor of Medicine degrees from Texas A&M University.

  • Peter Tass

    Peter Tass

    Professor of Neurosurgery

    BioDr. Peter Tass investigates and develops neuromodulation techniques for understanding and treating neurologic conditions such as Parkinson’s disease, epilepsy, dysfunction following stroke and tinnitus. He creates invasive and non-invasive therapeutic procedures by means of comprehensive computational neuroscience studies and advanced data analysis techniques. The computational neuroscience studies guide experiments that use clinical electrophysiology measures, such as high density EEG recordings and MRI imaging, and various outcome measures. He has pioneered a neuromodulation approach based on thorough computational modelling that employs dynamic self-organization, plasticity and other neuromodulation principles to produce sustained effects after stimulation. To investigate stimulation effects and disease-related brain activity, he focuses on the development of stimulation methods that cause a sustained neural desynchronization by an unlearning of abnormal synaptic interactions. He also performs and contributes to pre-clinical and clinical research in related areas.

  • Steven Tate

    Steven Tate

    Clinical Assistant Professor, Psychiatry and Behavioral Sciences

    BioDr. Steven Tate serves as a Clinical Assistant Professor specializing in addiction medicine within the Department of Psychiatry & Behavioral Sciences at Stanford University School of Medicine. He earned his medical degree from the University of Chicago and his master's in medical statistics from the London School of Hygiene and Tropic Medicine. He then completed his internal medicine residency at the University of Pennsylvania and his fellowship in addiction medicine at Stanford. Dr. Tate sees patients in the Stanford Addiction Medicine/Dual Diagnosis Clinic and in the hospital on the Inpatient Addiction Medicine Consult Service. He is interested in teaching evidence-based addiction medicine and translating evidence into practice to improve the care of patients with substance use disorders.

  • Tyler Patrick Tate

    Tyler Patrick Tate

    Clinical Associate Professor, Pediatrics

    BioTyler Tate, MD, MA, is a pediatrician, palliative care physician, and ethicist at Stanford. His academic interests include suffering and flourishing, love and emotions, religion and bioethics, narrative and metaphor theory, sociolinguistics, and pediatric ethics. He practices pediatric palliative care and serves as a clinical ethicist at Lucile Packard Children’s Hospital at Stanford. He is also core faculty in the Stanford Center for Biomedical Ethics (SCBE). Prior to coming to Stanford he was an assistant professor at Oregon Health and Science University (OHSU) in Portland, Oregon.

  • Daniel Tawfik

    Daniel Tawfik

    Assistant Professor of Pediatrics (Critical Care)

    Current Research and Scholarly InterestsThe Tawfik lab studies the use of electronic health record metadata in identifying structures and processes that promote high quality healthcare. Our projects apply advanced analytical methods to large databases of primarily structured electronic health record data and EHR usage metadata.

  • Vivianne Tawfik

    Vivianne Tawfik

    Associate Professor of Anesthesiology, Perioperative and Pain Medicine (Adult Pain)

    Current Research and Scholarly InterestsMy overall research interest is to understand how the immune system interacts with the nervous system after injury to promote the transition from acute to chronic pain. In my clinical practice I care for patients with persistent pain that often occurs after minor trauma such as fracture or surgery. Using basic science approaches including whole system immune phenotyping with mass cytometry and genetic manipulation of peripheral and central immune cells, we seek to dissect the temporal and tissue-specific contribution of these cells to either promotion or inhibition of healing.

  • C. Barr Taylor

    C. Barr Taylor

    Member, Cardiovascular Institute

    Current Research and Scholarly InterestsDr. Taylor is developing and evaluating innovative electronic and computer-assisted programs to make treatments, proven effective for treating various lifestyle and psychosocial problems, more cost-effective and available. He is also developing new models of evidence-based psychiatry care for eating, anxiety and depressive disorders.