School of Medicine


Showing 811-820 of 1,302 Results

  • Alexandre Six

    Alexandre Six

    Postdoctoral Scholar, Pathology

    BioMy research is grounded in my curiosity about the living world and my desire to contribute to impactful, concrete discoveries. I began my journey in the world of biotechnology and microalgae during my studies at UTC in France, where I grew Volvox algae for tissue engineering purposes. Since then, I have been interested in studying and developing the potential of microalgae. During my PhD at CEA Cadarache, I investigated starch production in green microalgae for use in bioplastics. This work involved studying the induction, physiology and light requirements of starch accumulation, as well as developing a bioprocess for starch extraction, purification and plasticization. Working with Yonghua Li-Beisson, I have generated mutant strains of Ostreococcus tauri, one of the smallest known eukaryotes, to study the evolution of lipid metabolism in algae and plants. Here at Stanford, I am developing a genetic toolbox for non-model cyanobacteria in the Yeh lab.

  • Kelley M. Skeff, MD, PhD

    Kelley M. Skeff, MD, PhD

    George DeForest Barnett Professor of Medicine

    Current Research and Scholarly InterestsDevelopment and evaluation of improved teaching methods; assessment of teacher's attitudes toward their teaching role; study of clinical teaching; evaluation of alternative methods of learning in clinical clerkships (e.g. computer assisted instruction, video tape review, etc.).

  • Eila C. Skinner

    Eila C. Skinner

    Thomas A. Stamey Research Professor of Urology

    Current Research and Scholarly InterestsMy research focuses on outcomes in the treatment of muscle invasive and high-grade non-muscle invasive bladder cancer. This includes identifying markers of prognosis, predictive markers for response to surgery and chemotherapy, and working toward an individualized, multidisciplinary approach to disease management. I have also focused on optimizing the use of lower urinary tract reconstruction in patients undergoing cystectomy, and developing interventions to improve patient quality of life.

  • Lawrie Skinner

    Lawrie Skinner

    Clinical Associate Professor, Radiation Oncology - Radiation Physics

    BioLawrie Skinner, PhD DABR is a therapeutic medical physicist with clinical expertise in external beam radiation therapy, including advanced motion management techniques and MRI-guided radiation therapy.

    Research interests generally revolve around developing novel devices for advanced clinical practice. Examples include personalized 3D printed electron beam collimators, rotating couch overlays for total body radiation therapy, and radiotransparent audio visual communication and immersion displays.

    Dr skinner also has a research background in synchrotron x-ray scattering, neutron scattering, molecular dynamics and Monte Carlo computational modelling.

  • Stephen Skirboll

    Stephen Skirboll

    Associate Professor of Neurosurgery

    Current Research and Scholarly InterestsMy research focuses on screening strategies to identify and characterize cancer stem cells (CSCs) in human gliomas. We are pursuing this in several ways: 1) a novel colony-forming antibody live cell array to identify distinct CSC surface phenotypes, 2) RNAi screens to identify kinases critical for CSC tumorigenicity, 3) high throughput small molecule and chemical screens to identify compounds that selectively kill or target CSCs, and 4) identifying CSCs using the tumor specific EGFRvIII

  • Jan Skotheim

    Jan Skotheim

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

    Current Research and Scholarly InterestsMy overarching goal is to understand how cell growth triggers cell division. Linking growth to division is important because it allows cells to maintain specific size range to best perform their physiological functions. For example, red blood cells must be small enough to flow through small capillaries, whereas macrophages must be large enough to engulf pathogens. In addition to being important for normal cell and tissue physiology, the link between growth and division is misregulated in cancer.