Stanford University


Showing 41-50 of 740 Results

  • Hans-Christoph Becker, MD, FSABI, FSCCT

    Hans-Christoph Becker, MD, FSABI, FSCCT


    Current Research and Scholarly InterestsMyocardial bridges (MB) with associated upfront atherosclerotic lesions are common findings on coronary computed tomography angiography (CTA). Abnormal septal wall motion in exercise echocardiography (EE) may to be associated with MB. Intravascular ultrasound (IVUS) is considered the gold standard for the detection of MB. We investigate whether CTA is comparable to IVUS for the assessment of MB and upstream plaques in symptomatic patients with suspicion for MB raised by EE.

  • Gill Bejerano

    Gill Bejerano

    Professor of Developmental Biology, of Computer Science and of Pediatrics (Genetics)
    On Partial Leave from 2026-07-16 To 2026-08-31

    Current Research and Scholarly Interests1. Automating monogenic patient diagnosis.
    2. The genomic signatures of independent divergent and convergent trait evolution in mammals.
    3. The logic of human gene regulation.
    4. The reasons for sequence ultraconservation.
    5. Cryptogenomics to bridge medical silos.
    6. Cryptogenetics to debate social injustice.
    7. Managing patient risk using machine learning.
    8. Understanding the flow of money in the US healthcare system.

  • Daniel Bernstein

    Daniel Bernstein

    Alfred Woodley Salter and Mabel G. Salter Endowed Professor of Pediatrics

    Current Research and Scholarly Interests1. Using iPSC-derived cardiomyocytes to understand hypertrophic cardiomyopathy and heart failure associated with congenital heart disease.
    2. Role of alterations in mitochondrial dycamics and function in normal physiology and disease.
    3. Differences between R and L ventricular responses to stress,
    4. Immune biomarkers of risk after pediatric VAD implantation.
    5. Biomarkers for post-transplant lymphoproliferative disorder.

  • Gerald Berry

    Gerald Berry

    Richard Kempson, M.D., Professor of Surgical Pathology

    Current Research and Scholarly InterestsCardiopulmonary and pulmonary transplant medicine; diagnostic surgical pathology

  • Mark Francis Berry, MD

    Mark Francis Berry, MD

    Mylavarapu Rogers Professor of Cardiothoracic Surgery

    BioDr. Berry joined the Division of Thoracic Surgery at Stanford in August 2014. He came to Stanford from Duke University, where he had most recently served as Associate Professor. He received his medical degree at the University of Pennsylvania School of Medicine after receiving bachelors and masters degrees in Electrical Engineering at the University of Pennsylvania. He completed his residency in Cardiothoracic Surgery at Duke University Medical Center after performing a residency in General Surgery at the Hospital of the University of Pennsylvania. His Cardiothoracic Surgical training included a year dedicated to Minimally Invasive General Thoracic Surgery, a period that also included an American Association for Thoracic Surgery sponsored Traveling Fellowship at the University of Pittsburgh.

    Dr. Berry practices all aspects of thoracic surgery, including procedures for benign and malignant conditions of the lung, esophagus, and mediastinum. He has a particular interest in minimally invasive techniques, and has extensive experience in treating thoracic surgical conditions using video-assisted thoracoscopic surgical (VATS), laparoscopic, robotic, endoscopic, and bronchoscopic approaches. He serves as the co-Director of the Stanford Minimally Invasive Thoracic Surgery Center (SMITS), and has both directed and taught in several minimally invasive thoracic surgery courses.

    Dr. Berry also has a Masters of Health Sciences in Clinical Research from Duke University. His clinical research activities mirror his clinical interests and activities in optimizing short-term and long-term outcomes of patients with thoracic surgical conditions. He has more than 150 peer-reviewed publications, most of which are related to both the use of minimally invasive thoracic surgical techniques as well as evaluating outcomes after treatment of thoracic malignancies. His clinical practice and his research both focus on choosing the most appropriate treatment and approach for patients based on the individual characteristics of the patient and their disease process.

  • Vivek Bhalla, MD

    Vivek Bhalla, MD

    Associate Professor of Medicine (Nephrology)

    Current Research and Scholarly InterestsDr. Bhalla's two primary research interests are in the role of the kidney in diabetes and hypertension. We use molecular, biochemical, and transgenic approaches to study: (1) mechanisms diabetic kidney disease disease including the role of the endothelium to regulate inflammation and kidney injury; and (2) regulation of tubular transport of glucose, sodium, and potassium. These latter studies have treatment implications in diabetes, kidney disease, and hypertension.

  • Ami Bhatt

    Ami Bhatt

    Professor of Medicine (Hematology) and of Genetics

    Current Research and Scholarly InterestsThe Bhatt lab is exploring how the microbiota is intertwined with states of health and disease. We apply the most modern genetic tools in an effort to deconvolute the mechanism of human diseases.

  • Y. Katherine Bianco

    Y. Katherine Bianco

    Clinical Professor, Obstetrics & Gynecology - Maternal Fetal Medicine

    BioI am Latinx Maternal-Fetal Medicine specialist and Medical Geneticist and a Professor of Obstetrics and Gynecology at Stanford University. I direct the Maternal Heart Program at Stanford Children’s Hospital and Clinics, leading a multidisciplinary team caring for complex cardiac conditions in pregnancy. I am dedicated educator and mentor, that have trained more than 50 trainees spanning from high school students to junior faculty. I serve in the Dean’s Office for Faculty Professional Development and Engagement and oversees the OBGYN Advance and Promotions, where i support advances programs to support faculty growth, mentorship, and academic success. My work integrates genetics, cardiology, and maternal health to improve outcomes for women and families. My clinical interest in pregnancies complicated with birth defects has led my underlying research interests in genomic abnormalities in the human trophoblast carrying to faulty placentation. The latter began with initial work during K12 and KO8 funding. I took a great interest in the human placenta as it carries potential advantages over other tissues sources: first, this highly metabolically active organ is the potential source of many transcripts. Second, the placenta forms at a very early stage of embryonic development, potentially allowing detection of primary alterations as compared to secondary changes that may mask the underlying causal phenomena. Finally, studying early placentation may provide targets for development of novel molecular approaches, such as up-regulate or down-regulate genes, the protein products of which could potentially serve as molecular surrogates for diagnosis and treatment of pregnancy complication such as miscarriages, pre-eclampsia, pregnancy induced hypertension and intrauterine growth retardation. This work has led to the first Trisomy 21, Trisomy 18, trisomy 13 cell lines established from human placentas making it possible to apply gene editing in the early stages of human trophoblast development.

    As my primary clinical responsibility involves treating patients needing medical care and support through their high risk pregnancies, I am interested in factors that may impact outcomes, such as prenatal screening and diagnosis, maternal heart conditions, labor and delivery management, and safety approaches for the second stage of labor.
    With regards to my interest in fetal medicine, I have worked in collaboration with other specialists such as radiologists and pediatric cardiologists utilizing imagining studies to assess and determine successful perinatal care and fetal survival.

    . My career has been defined by a commitment to addressing the most pressing drivers of maternal morbidity and mortality, particularly cardiovascular disease in pregnancy. I have led multidisciplinary maternal cardiac programs at UCSF and Stanford, impacting over 600 high-risk pregnancies and demonstrating how team-based care transforms outcomes.
    Beyond clinical innovation, my work spans translational science and global health. I have contributed to advancing prenatal diagnostics—validating tools for non-invasive prenatal testing, improving detection of conditions like Down syndrome. Globally, I’ve led training initiatives in countries with high maternal mortality, such as India, Guatemala, El Salvador, and Costa Rica, building capacity through education and simulation.
    Equally central is mentorship. I have mentored over 50 trainees across all levels, fostering diversity and advancing women in medicine. My work goes beyond language access to cultural humility, improving care for diverse populations.
    As a physician who bridges worlds—from my modest beginnings in a lower-middle-income country, through medical training in the U.S., to leading at Stanford—I know that diverse paths shape stronger futures. I believe that every mother’s life saved is a generation empowered—and through science, mentorship, and equity,