School of Medicine
Showing 2,181-2,190 of 5,162 Results
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Beverley Kane
Adjunct Clinical Assistant Professor, Medicine - Primary Care and Population Health
BioBeverley Kane, MD, was Board Certified in Family Medicine, then completed fellowships in Ob-Gyn (San Francisco Children's Hosptial) and Sports Medicine (London Univeristy). She has worked in the private practice of sports medicine; in medical informatics, specializing in doctor-patient communication (WebMD); and in stress management with her private practice, Horsensei Equine-Assisted Learning & THerapy (HEALTH). Her latest book, "Equine-imity--Stress Reduction and Emotional Self-Regulation in the Company of Horses," published 27 March 2021, can be seen at http://equine-imity.com/
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Guson Kang
Clinical Assistant Professor, Medicine - Cardiovascular Medicine
BioDr. Kang is an interventional cardiologist who specializes in the treatment of structural heart disease. He is an expert in complex coronary interventions, transcatheter aortic, mitral, and tricuspid valve replacements, transcatheter mitral and tricuspid valve repair, left atrial appendage occlusion, PFO/septal defect closure, alcohol septal ablation, paravalvular leak closure, balloon pulmonary angioplasty, and pulmonary vein stenting.
A Bay Area native, he graduated from Stanford University and obtained his medical degree at Yale University. He came back to Stanford to train in internal medicine, cardiology, and interventional cardiology before completing an advanced structural interventions fellowship at Ford Hospital. -
Hyunseok Kang
Professor of Medicine (Oncology)
Current Research and Scholarly InterestsMy research interest lies in development of precision oncology based approaches and novel therapeutics for rare cancers of head and neck, including adenoid cystic cancers, salivary duct cancers, sinonasal cancers and thyroid cancers.
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Ming Jeffrey Kao, PhD, MD
Clinical Associate Professor, Anesthesiology, Perioperative and Pain Medicine
Current Research and Scholarly Interests1. Patient-reported outcomes. Efficient, multi-feature item-response theory (IRT) based computerized adaptive testing (CAT) algorithm using item banks from PROMIS and NIH Toolbox
2. Activity monitoring. Novel analytic framework for physical activity monitoring in the context of pain.
3. Operations research. Multi-variable discrete and continuous optimization for Lean Hospital Management
4. National trends in pain medication prescription -
Peter Kao
Associate Professor of Medicine (Pulmonary and Critical Care Medicine)
Current Research and Scholarly InterestsOur research program has several active projects:
1.) Pulmonary Vascular Disease Simvastatin reversed experimental pulmonary hypertension, and is safe for treatment of patients. Blinded clinical trials of efficacy are in progress.
2.) Lung inflammation and regeneration (stem cells)
3.) Lung surfactant rheology and oxidative stress
4.) Gene regulation by RNA binding proteins, NF45 and NF90 through transcriptional and posttranscriptional mechanisms -
Pankaj Kapahi
Professor (Research) of Medicine (Endocrinology)
BioPankaj Kapahi is a Professor and aging researcher whose laboratory seeks to understand why organisms age and why the rate and consequences of aging differ so dramatically between individuals, sexes, and species. The lab approaches aging through the lens of evolution, asking how pathways that evolved to optimize growth, reproduction, and survival early in life can shape health and disease later in life.
A major focus of the laboratory is the interaction between nutrition, metabolism, reproduction, and aging. The lab has helped define how nutrient-sensing pathways, including TOR, dietary restriction, circadian biology, and metabolic adaptation regulate lifespan and age-related disease. More recently, this work has expanded to reproductive aging and the Reproductive Resilience Hypothesis, the idea that evolutionary pressures linking reproductive success to prolonged survival, repeated reproduction, and caregiving may have selected for biological programs that simultaneously support reproduction and somatic resilience.
Using comparative and experimental approaches across flies, worms, mice, and humans, the lab studies how these evolutionarily conserved programs influence brain aging, neurodegeneration, metabolic disease, reproductive aging, cell senescence, and resilience. The broader philosophy of the laboratory is that aging is best understood not as an isolated biological program, but as an emergent consequence of the evolutionary trade-offs among reproduction, nutrition, growth, maintenance, and survival.