Wu Tsai Human Performance Alliance
Showing 201-210 of 364 Results
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Maryam S. Makowski, PhD
Clinical Associate Professor, Psychiatry and Behavioral Sciences
BioMaryam S. Makowski, PhD, FACN, CNS, NBC-HWC, is a Clinical Associate Professor in the Stanford University Department of Psychiatry and Behavioral Sciences and the Associate Director of Scholarship and Health Promotion for Stanford Medicine’s WellMD & WellPhD program. As a medical nutrition scientist, Certified Nutrition Specialist, and National Board Certified Health and Wellness Coach, Dr. Makowski provides nutrition consultations and well-being coaching to Stanford School of Medicine faculty, as well as Stanford Medicine residents and fellows through the WellConnect Program. She also provides mental health and nutrition coaching to patients at the Lifestyle Psychiatry Clinic as a Health and Wellness Coach in the Department of Psychiatry and Behavioral Sciences.
Dr. Makowski's research focuses on identifying nutritional strategies to minimize physician fatigue, stress, and sleep-related impairment. In her coaching, she employs evidence-based and personalized strategies to optimize the well-being and performance of her clients. In recognition of her contributions, she received the 2024 Annual Chairman's Award for Clinical Innovation and Service in the Department of Psychiatry and Behavioral Sciences at Stanford University School of Medicine.
She earned her master's and doctoral degrees in clinical nutrition, nutritional epidemiology, and medical science from the University of Toronto. Prior to joining Stanford, Dr. Makowski worked as a scientific associate at Toronto General Hospital–University Health Network and served as an advisor to Air Canada Rouge pilots and cabin crew on fatigue management. Throughout her career, she has authored highly cited scientific papers related to nutrition and well-being, making significant contributions to the field. She has delivered over 100 lectures, grand rounds, seminars, and webinars to thousands of physicians and physician trainees worldwide. -
Robert Malenka
Nancy Friend Pritzker Professor of Psychiatry and Behavioral Sciences
Current Research and Scholarly InterestsLong-lasting changes in synaptic strength are important for the modification of neural circuits by experience. A major goal of my laboratory is to elucidate the molecular events that trigger various forms of synaptic plasticity and the modifications in synaptic proteins that are responsible for the changes in synaptic efficacy.
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William J. Maloney, MD
Boswell Chair of Orthopaedics
Current Research and Scholarly InterestsDr. Maloney is nationally and internationally recognized for his contributions to the improved understanding of the causes of failure of surgical joint replacement. For example; he established a critical link between polyethylene wear debris and bony erosion, with resulting significant changes in the materials and design strategies of joint replacement surgery. More recently, he has shown that wear debris particles are coated in vivo with human proteins, such as albumin; this observation has notably improved the validity of in vitro investigation in this area. His research in the area of joint replacement has twice won awards from the Hip Society. Dr. Maloney is currently the President of the American Academy of Orthopaedic Surgeons and has served on numerous AAOS committees, including the Council on Education. Previously, he was chair of the American Joint Replacement Registry Board of Directors (AJRR), and on the board of directors for the Knee Society, the Hip Society, the Western Orthopaedic Association, and the American Association of Hip and Knee Surgeons (AAHKS). Dr. Maloney is a past president of the Hip Society. He has been a Visiting Professor to numerous universities and institutions throughout the United States and Asia.
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Alison Marsden
Douglass M. and Nola Leishman Professor of Cardiovascular Diseases, Professor of Pediatrics (Cardiology) and of Bioengineering and, by courtesy, of Mechanical Engineering
Current Research and Scholarly InterestsThe Cardiovascular Biomechanics Computation Lab at Stanford develops novel computational methods for the study of cardiovascular disease progression, surgical methods, and medical devices. We have a particular interest in pediatric cardiology, and use virtual surgery to design novel surgical concepts for children born with heart defects.
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Maya Mathur
Associate Professor (Research) of Pediatrics, of Medicine (Computational Medicine) and, by courtesy, of Epidemiology and Population Health
On Partial Leave from 2026-08-27 To 2027-03-10Current Research and Scholarly InterestsSynthesizing evidence across studies while accounting for biases
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Ted Mau, MD, PhD
Edward C. and Amy H. Sewall Professor in the School of Medicine
BioDr. Ted Mau is a board-certified, fellowship-trained laryngologist with Stanford Health Care Ear, Nose, and Throat. He is also a professor in the Department of Otolaryngology – Head & Neck Surgery and chief of the Division of Laryngology at Stanford University School of Medicine. Dr. Mau came to Stanford in 2025 following 17 years at the University of Texas Southwestern Medical Center in Dallas, Texas, where he was director of the Voice Center and vice chair of research for the Department of Otolaryngology – Head and Neck Surgery.
Dr. Mau’s clinical practice focuses on disorders of the voice, airway, and swallowing. He has particular interest in vocal fold and laryngeal lesions, voice problems, vocal fold paralysis, recurrent laryngeal nerve injuries, and laryngeal dystonia. He is an expert in microlaryngeal surgeries, including laser surgeries of the larynx and airway. He also has extensive experience with laryngeal framework surgery for the treatment of vocal fold paralysis, as well as in-office procedures for vocal fold and larynx lesions.
As a physician-scientist, Dr. Mau engages in clinical and laboratory research in voice science and voice disorders. He has served as principal investigator or co-investigator on several National Institutes of Health (NIH)-funded projects, including computational voice simulation, development of ultrafast laser microlaryngeal surgery, sensory contributions to voice disorders, and central neuromodulation as a treatment for recurrent laryngeal nerve injuries. Dr. Mau was a site investigator for a DNA therapeutic vaccine clinical trial for recurrent respiratory papillomatosis. He has served on several NIH study sections.
Dr. Mau served as associate editor of laryngology for The Laryngoscope, a leading journal in the field of otolaryngology. He has published articles in peer-reviewed journals such as the Journal of Voice, The Laryngoscope, and Otolaryngology – Head and Neck Surgery.
Dr. Mau is a fellow of the American Laryngological Association (ALA) and the Triological Society. He is also a member of the American Broncho-Esophagological Association and the secretary of the ALA Council. -
Michaëlle Ntala Mayalu
Assistant Professor of Mechanical Engineering and, by courtesy, of Bioengineering
BioDr. Michaëlle N. Mayalu is an Assistant Professor of Mechanical Engineering. She received her Ph.D., M.S., and B.S., degrees in Mechanical Engineering at the Massachusetts Institute of Technology. She was a postdoctoral scholar at the California Institute of Technology in the Computing and Mathematical Sciences Department. She was a 2017 California Alliance Postdoctoral Fellowship Program recipient and a 2019 Burroughs Wellcome Fund Postdoctoral Enrichment Program award recipient. She is also a 2023 Hypothesis Fund Grantee.
Dr. Michaëlle N. Mayalu's area of expertise is in mathematical modeling and control theory of synthetic biological and biomedical systems. She is interested in the development of control theoretic tools for understanding, controlling, and predicting biological function at the molecular, cellular, and organismal levels to optimize therapeutic intervention.
She is the director of the Mayalu Lab whose research objective is to investigate how to optimize biomedical therapeutic designs using theoretical and computational approaches coupled with experiments. Initial project concepts include: i) theoretical and experimental design of bacterial "microrobots" for preemptive and targeted therapeutic intervention, ii) system-level multi-scale modeling of gut associated skin disorders for virtual evaluation and optimization of therapy, iii) theoretical and experimental design of "microrobotic" swarms of engineered bacteria with sophisticated centralized and decentralized control schemes to explore possible mechanisms of pattern formation. The experimental projects in the Mayalu Lab utilize established techniques borrowed from the field of synthetic biology to develop synthetic genetic circuits in E. coli to make bacterial "microrobots". Ultimately the Mayalu Lab aims to develop accurate and efficient modeling frameworks that incorporate computation, dynamical systems, and control theory that will become more widespread and impactful in the design of electro-mechanical and biological therapeutic machines. -
Jay McClelland
Lucie Stern Professor in the Social Sciences, Professor of Psychology and, by courtesy, of Linguistics and of Computer Science
Current Research and Scholarly InterestsMy research addresses topics in perception and decision making; learning and memory; language and reading; semantic cognition; and cognitive development. I view cognition as emerging from distributed processing activity of neural populations, with learning occurring through the adaptation of connections among neurons. A new focus of research in the laboratory is mathematical cognition and reasoning in humans and contemporary AI systems based on neural networks.