Vice Provost and Dean of Research


Showing 41-50 of 77 Results

  • Andreas Tolias

    Andreas Tolias

    Professor of Ophthalmology

    BioAndreas Tolias is a faculty member at Stanford University, where he co-leads the Enigma Project. His research lies at the interface of neuroscience and AI, combining large-scale neuroscience experiments with machine learning to uncover the principles of natural intelligence. By focusing on perceptual inference and decision-making, his lab integrates systems and computational neuroscience with AI to decipher the network-level principles of intelligence. Dr. Tolias’s work aims to reverse-engineer these principles to create AI systems that are smarter, more robust, trustworthy, and efficient, while providing a powerful platform to test brain algorithms under complex natural tasks. He earned his B.A. and M.A. in Natural Sciences from the University of Cambridge, a Ph.D. in Systems and Computational Neuroscience from MIT, and completed postdoctoral training in Neuroscience and Machine Learning at the Max Planck Institute for Biological Cybernetics in Tübingen.

  • Kimberley Tolias

    Kimberley Tolias

    Professor (Research) of Anesthesiology, Perioperative and Pain Medicine

    Current Research and Scholarly InterestsThe human brain is composed of billions of neurons connected through trillions of synapses that form the neural circuits underlying thought, emotion, learning, memory, and behavior. These synaptic connections are not static - they are continuously shaped and remodeled throughout life in response to experience, a processes critical for learning and memory. When neural circuits fail to develop or function properly, the consequences can be devastating, contributing to conditions ranging from autism spectrum disorder and intellectual disability to chronic pain, depression, schizophrenia, Alzheimer's disease, and cognitive decline.

    Research in the Tolias laboratory seeks to understand the fundamental molecular and cellular mechanisms that govern how neural circuits form, adapt, and repair themselves in the mammalian central nervous system (CNS). Our work focuses on how neurons sense signals from their environment and convert them into intracellular signaling pathways that drive synapse formation and remodeling, dendritic and axonal growth, and cell migration. We are also interested in how disruption of these pathways contributes to neurological and neuropsychiatric disease, and whether targeting specific signaling mechanisms can promote recovery following CNS injury or disease.

    The laboratory combines mouse genetics with molecular, cellular, biochemical, electrophysiological, genomic, and behavioral approaches to bridge fundamental neuroscience with translational discovery.

    Current Research Areas:

    - Molecular mechanisms regulating synapse development, neural circuit formation, and synaptic plasticity during learning and memory

    - Roles of Rho GTPase signaling pathways in brain development, circuit remodeling, and neurological disease

    - Functions of Adhesion-GPCRs in synapse development, dendritic and axonal growth, and neural circuit function

    - Mechanisms underlying chronic pain, opioid tolerance, and chronic pain-associated mood and cognitive disorders

    - Synaptic and circuit dysfunction following traumatic brain injury, radiotherapy, and other CNS injuries

    - Development of new tools to visualize and map synaptic remodeling during learning and disease

    - Interactions between the gut microbiome, brain development, neural circuit function, and behavior

  • Michael Tomz

    Michael Tomz

    William Bennett Munro Professor of Political Science and Senior Fellow at the Stanford Institute for Economic Policy Research

    BioMichael Tomz is the William Bennett Munro Professor in Political Science and Chair of the Department of Political Science at Stanford University. He is also a Senior Fellow at the Stanford Institute for Economic Policy Research, a Senior Fellow at the Stanford Center on Global Poverty and Development, and the Landreth Family University Fellow in Undergraduate Education.

    Tomz has published in the fields of international relations, American politics, comparative politics, and statistical methods. He is the author of Reputation and International Cooperation: Sovereign Debt across Three Centuries and numerous articles in political science and economics journals.

    Tomz received the International Studies Association’s Karl Deutsch Award, given to a scholar who, within 10 years of earning a Ph.D., has made the most significant contribution to the study of international relations. He has also won the Giovanni Sartori Award for the best book developing or applying qualitative methods; the Jack L. Walker Award for the best article on Political Organizations and Parties; the best paper award from the APSA section on Elections, Public Opinion and Voting Behavior; the best paper award from the APSA section on Experimental Research; and the Okidata Best Research Software Award. His research has been supported by the National Science Foundation.

    Tomz has received numerous teaching awards, including the Dean’s Award for Distinguished Teaching and the Cox Medal for Excellence in Fostering Undergraduate Research. In 2017 he received Stanford’s highest teaching honor, the Walter J. Gores Award for Excellence in Teaching. He founded and continues to direct the Summer Research College program for undergraduates in political science.

    Tomz holds a Ph.D. from Harvard University; a master’s degree from the University of Oxford, where he was a Marshall Scholar; and an undergraduate degree from Georgetown University. He has been a visiting scholar at the Center for Advanced Study in the Behavioral Sciences, the Federal Reserve Bank of Minneapolis, the Hoover Institution, the Institute for Research in the Social Sciences, and the International Monetary Fund.

  • Alberto Tono

    Alberto Tono

    Ph.D. Student in Civil and Environmental Engineering, admitted Autumn 2021
    Ph.D. Minor, Computer Science
    Grad RA student-Hourly, Institute for Human-Centered Artificial Intelligence (HAI)

    BioTono Alberto is a current PhD Student at Stanford under the supervision of Kumagai Professor: Martin Fischer. He is currently exploring ways in which the Convergence between Digital and Humanities can facilitate cross-pollination between different industries within an Ethical Framework focused on augmenting human intelligence.

    He served as the Research and Computational Design Leader in Architectural and Engineering organizations, receiving the O1-visa for outstanding abilities with both HOK and HDR. Tono obtained his Masters in Building Engineering - Architecture from the University of Padua and the Harbin Institute of Technology under the supervision of Andrea Giordano, Carlo Zanchetta and Paolo Borin. He has been working in the computational design and deep learning space since 2014. Furthermore, he is improving Building Information Modeling and Virtual Design and Construction (BIM/VDC) workflows within a statistical framework to optimize the sustainability impact of these processes. Hence, Tono is LEED AP certified. He is an international multi-award-winning “hacker” and speaker, and his work within Architecture and Artificial Intelligence brought him to companies in China, the Netherlands, Italy, and California. Thanks to his multidisciplinary approach he worked as Data Scientist and Geometric Deep Learning Researcher at a Physna/Thangs helping to raise over 80 Milion while working on 3D Search and Monocular 3D Shape Retrieval problems.

    Currently is focusing on better methodologies for Generative Building Design, centered on capturing design knowledge from the primordial and universal act of Sketching.

  • Natalie Torok

    Natalie Torok

    Professor of Medicine (Gastroenterology and Hepatology)

    Current Research and Scholarly InterestsOur lab is focused on exploring the role of matrix remodeling in disease progression in metabolic dysfunction steatohepatitis (MASH)-related hepatocellular carcinoma and primary sclerosing cholangitis. Our goal is to uncover how biomechanical characteristics of the ECM affect mechano-sensation, and how these pathways could ultimately be targeted. We are also interested in aging and its effects on metabolic pathways in MASH and HCC.