Wu Tsai Neurosciences Institute


Showing 121-130 of 658 Results

  • Reinhold Dauskardt

    Reinhold Dauskardt

    Ruth G. and William K. Bowes Professor in the School of Engineering

    BioDauskardt and his group have worked extensively on integrating new materials into emerging technologies including thin-film structures for nanoscience and energy technologies, high-performance composite and laminates for aerospace, and on biomaterials and soft tissues in bioengineering. His group has pioneered methods for characterizing adhesion and cohesion of thin films used extensively in device technologies. His research on wound healing has concentrated on establishing a biomechanics framework to quantify the mechanical stresses and biologic responses in healing wounds and define how the mechanical environment affects scar formation. Experimental studies are complimented with a range of multiscale computational capabilities. His research includes interaction with researchers nationally and internationally in academia, industry, and clinical practice.

  • Jenna Davis

    Jenna Davis

    Professor of Civil and Environmental Engineering, of Environmental Social Sciences and Higgins-Magid Senior Fellow at the Woods Institute

    Current Research and Scholarly InterestsProfessor Davis’ research and teaching deals broadly with the role that water plays in promoting public health and economic development, with particular emphasis on low- and middle-income countries. Her group conducts applied research that utilizes theory and analytical methods from public and environmental health, engineering, microeconomics, and planning. They have conducted field research in more than 20 countries, most recently including Zambia, Bangladesh, and Kenya.

  • Mark M. Davis

    Mark M. Davis

    Burt and Marion Avery Family Professor

    Current Research and Scholarly InterestsMolecular mechanisms of lymphocyte recognition and differentiation; Systems immunology and human immunology; vaccination and infection.

  • John W. Day, MD, PhD

    John W. Day, MD, PhD

    Professor of Neurology and Neurological Sciences (Adult Neurology), of Pediatrics (Genetics) and, by courtesy, of Pathology

    Current Research and Scholarly InterestsOur Neuromuscular Division coordinates a comprehensive effort to conquer peripheral nerve and muscle disorders, including the muscular dystrophies, motor neuron disorders, neuromuscular junction abnormalities, and peripheral neuropathies. With patients and families foremost in mind, we have had success defining and combating these diseases, with research focused on identifying genetic causes, developing novel treatment, and maximizing patient function by optimizing current management.

  • Vinicio de Jesus Perez MD

    Vinicio de Jesus Perez MD

    Associate Dean of Stanford MD Admissions and Professor of Medicine (PACCM)

    Current Research and Scholarly InterestsMy research focuses on the molecular and cellular mechanisms that drive pulmonary vascular disease, particularly pulmonary arterial hypertension (PAH). I study how endothelial dysfunction, impaired vascular repair, pericyte abnormalities, inflammation, and metabolic dysregulation contribute to pulmonary vascular remodeling and right ventricular failure. Through the integration of human tissue studies, advanced Omics technologies, and translational animal models, my work aims to identify novel th

  • Charles DeBattista

    Charles DeBattista

    Professor of Psychiatry and Behavioral Sciences (General Psychiatry and Psychology - Adult)

    Current Research and Scholarly InterestsTreatment resistant depression.

    Novel biological interventions in the treatment of mental illness.

    Anti-glucocorticoid drugs in the treatment of mood disorders.

    Augmentation strategies in the treatment of depression.

  • Thomas Dee

    Thomas Dee

    Barnett Family Professor, Professor of Education, Senior Fellow at the Hoover Institution and at the Stanford Institute for Economic Policy Research

    BioThomas S. Dee, Ph.D., is the Barnett Family Professor at Stanford University’s Graduate School of Education (GSE), the Robert and Marion Oster Fellow at the Hoover Institution, and a Senior Fellow at the Stanford Institute for Economic Policy Research (SIEPR). He is also a Research Associate at the National Bureau of Economic Research (NBER) and the Faculty Director of the John W. Gardner Center for Youth and Their Communities. His research focuses largely on the use of quantitative methods to inform contemporary issues of public policy and practice. In 2024, he received the Peter H. Rossi Award for Contributions to the Theory or Practice of Program Evaluation from the Association for Public Policy Analysis and Management (APPAM) and the Outstanding Public Communication of Education Research Award from the American Educational Research Association (AERA).

  • Seena Dehkharghani MD FAHA

    Seena Dehkharghani MD FAHA

    Clinical Professor, Radiology

    BioMy research spans human, animal, and phantom studies of cerebral perfusion and metabolism, emphasizing thermometry and
    neuroenergetics. My investigations into ischemic thermometry were twice recognized with the Foundation of the ASNR Scholar Award in Neuroradiology Research and subsequently by a R01 awarded by the NIBIB. My group has developed novel computational models for cerebral hemodynamics (dynamic BOLD-CVR) and first-of-kind hyperportable microwave stroke detection tools using deep learning. I have obtained formal certification (Mathworks, Google) in machine learning and data analytics and remain engaged in self-learning in AI/ML methodologies. I have also been a post-graduate student through the Stanford University School of Engineering SCPD program in Computer Science, again with a focus in artificial intelligence through the Stanford University School of Engineering, with core competencies including machine learning, Bayesian Networks, Markov Decision Processes, and Deep Learning.

    I formerly served as Director of Stroke and Cerebrovacular Imaging Programs at Emory University and New York University, leading basic, translational, and clinical cerebrovascular imaging programs in collaboration with academic and industry partners worldwide. I returned to Stanford in Feb 2025 as Professor and Associate Chair of Informatics, and as Affiliate Faculty of the Wu Tsai Neuroscience Institute, Stanford Artificial Intelligence in Medicine and Imaging (AIMI) Center, Center for Digital Health (CDH), and
    Human-Centered AI (HAI) Institute.

    Ongoing projects that I would like to highlight include:
    1R01EB034820-01 (NIBIB).

    Previously, I was funded in an application to the Google AI Social Impact Challenge for the development of portable ultra-wideband microwave imaging instrumentation (patents issued), work for which I was selected to the NIH-NIBIB c3i Concept to Clinic: Commercializing Innovation Program.

    Presently, we have proposed to develop realistic computational models of ischemic stroke and bridge a heretofore unattempted multiscale and
    multiphysics view of neuroenergetic disturbance in the ischemic brain. The merger of a state of the art in silico neurobiological canvas
    with more than a decade of insights from rigorous experimental neuroscience and biophysical modeling points us to disturbed
    thermoregulation/dysthermia at the critical intersection of cerebral perfusion, metabolism, viability, and hence neuroenergetic balance.
    Cerebral dysthermia will be formalized in a radical departure from the historically perfusion-centered frame of reference in
    cerebrovascular ischemia, the latter having shown unfit to capture fully the adaptive, dynamic metabolic changes that subserve the
    ischemic brain. We leverage the pathoanatomic realism of our complete multiscale vascular, flow, and perfusion model tuned to direct
    measures of cerebral perfusion, oximetry, and thermography across hemodynamics states in individuals subjected to hemodynamics
    provocation, linking two procedures developed by my lab: time-resolved BOLD cerebrovascular reactivity with acetazolamide and the
    brain thermal response (BTR). This work represents a new direction of cerebrovascular and
    neurometabolic research enabled by traditionally unattainable biomarker ensembles based in non-invasive, spatiotemporally-resolved
    brain thermography.

  • Karl Deisseroth

    Karl Deisseroth

    D. H. Chen Professor, Professor of Bioengineering and of Psychiatry and Behavioral Sciences

    Current Research and Scholarly InterestsKarl Deisseroth's laboratory created and developed optogenetics, hydrogel-tissue chemistry (beginning with CLARITY), and a broad range of enabling methods. He also has employed his technologies to discover the neural cell types and connections that cause adaptive and maladaptive behaviors.

  • Scott L. Delp, Ph.D.

    Scott L. Delp, Ph.D.

    Director, Wu Tsai Human Performance Alliance at Stanford, James H. Clark Professor in the School of Engineering, Professor of Bioengineering and of Mechanical Engineering

    Current Research and Scholarly InterestsExperimental and computational approaches to study human movement. Development of biomechanical models to analyze muscle function, study movement abnormalities, design medical products, and guide surgery. Imaging and health technology development. Discovering the principles of peak performance to advance human health. Human performance research. Wearable technologies, video motion capture, and machine learning to enable large-scale analysis.