School of Medicine
Showing 691-700 of 1,196 Results
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Michael V. McConnell, MD, MSEE
Current Research and Scholarly InterestsMy imaging research has involved clinical and molecular Imaging of cardiovascular disease, with a focus on coronary and vascular diseases, including atherosclerosis, aortic aneurysms, and vascular inflammation.
My prevention research has involved innovative technologies to reduce coronary and vascular disease, including early disease detection plus leveraging mobile health and AI to enhance heart heart in patients and populations. -
Tracey McLaughlin
Professor of Medicine (Endocrinology)
On Partial Leave from 2026-08-13 To 2026-09-17Current Research and Scholarly InterestsDr. McLaughlin conducts clinical research related to obesity, insulin resistance, diabetes, and cardiovascular disease (CVD). Current studies include: 1) the impact of macronutrient composition on metabolism, DM2 and CVD; 2) comparison of different weight loss diets on metabolism and CVD risk reduction ; 3) role of adipocytes and adipose tissue immune cells in modulating insulin resistance; 4) use of continuous glucose monitoring and multi-omics to define metabolic phenotype and precision diets
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Erin R. McNeely, MD, FACP
Clinical Assistant Professor, Medicine - Primary Care and Population Health
BioDr. Erin McNeely is a board-certified internal medicine physician with Stanford Health Care. She is also a clinical assistant professor in the Department of Medicine, Division of Primary Care and Population Health at Stanford University School of Medicine.
Dr. McNeely specializes in disease prevention, diagnosis, and management, with a special focus on cardiovascular health, including high blood pressure and metabolic disease. She also has extensive experience in integrative medicine. Dr. McNeely believes in working with the whole person to develop individualized care plans and to meet patients’ unique health goals.
Dr. McNeely’s research interests include health equity and primary care-based value and quality improvement.
Dr. McNeely has published her research in several peer-reviewed journals, including The Journal of Heart and Lung Transplantation, Alzheimer’s & Dementia: Translational Research & Clinical Interventions, and Spatial and Spatio-Temporal Epidemiology.
Dr. McNeely is a fellow of the American College of Physicians. -
Natalia Medvedeva
Clinical Assistant Professor, Medicine - Infectious Diseases
BioDr Natalia Medvedeva specializes in the treatment of infectious diseases. She has a special interest in antimicrobial stewardship and medical education.
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Eric Meffre
Professor of Medicine (Immunology and Rheumatology)
BioDr. Meffre obtained his PhD in Immunology from the Université d’Aix-Marseille in France before he moved to the USA as a postdoc fellow in the laboratory of Dr. Michel Nussenzweig at The Rockefeller University in New York City. He became an assistant professor at Cornell University in 2003 before being recruited at Yale University as associate professor in 2009. He was tenured at Yale in 2014 before he joined the Department of Medicine/Division of Immunology and Rheumatology at Stanford University as a tenured full professor in 2022.
Dr. Meffre’s work focuses on the etiology of autoimmune syndromes and the roles played by B cells in these diseases. His group characterized the abnormal selection of developing autoreactive B cells in patients with rheumatoid arthritis (RA), systemic lupus erythematosus (SLE), type 1 diabetes (T1D), multiple sclerosis (MS) and Sjögren’s syndrome, resulting in large numbers of autoreactive naïve B cells accumulating in the patient’s blood. Hence, these autoreactive B cells may present self-antigens to T cells and initiate autoimmune diseases. These early B cell tolerance defects are likely primary to these autoimmune diseases and may result from genetic factors such as the 1858T PTPN22 allele that segregates with RA, SLE and T1D and correlate with an impaired removal of developing autoreactive B cells.
His research goals also consist in characterizing the molecules and pathways involved in the establishment of B cell tolerance and the removal of developing autoreactive B cells generated by random V(D)J recombination through the investigation of rare patients with primary immunodeficiency (PID) enrolled through an international network. Alteration of B cell receptor (BCR) or Toll-like receptor (TLR) signaling in PID patients results in a defective central B cell tolerance and a failure to counterselect developing autoreactive B cells in the bone marrow. In contrast, functional and suppressive regulatory T cells play a key role in preventing the accumulation of autoreactive clones in the mature naïve B cell compartment. The recent development of humanized mouse models recapitulating early B cell tolerance checkpoints and their defects in autoimmune settings allow further in-depth investigation of tolerance mechanisms and the development of novel approaches to restore defective central and peripheral B cell tolerance checkpoints and thwart autoimmunity.