Stanford University
Showing 101-150 of 2,467 Results
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Steven Banik
Assistant Professor of Chemistry
BioSteven Banik’s research interests center on rewiring mammalian biology and chemical biotechnology development using molecular design and construction. Projects in the Banik lab combine chemical biology, organic chemistry, protein engineering, cell and molecular biology to precisely manipulate the biological machines present in mammalian cells. Projects broadly aim to perform new functions that shed light on regulatory machinery and the potential scope of mammalian biology. A particular focus is the study of biological mechanisms that can be coopted by synthetic molecules (both small molecules and proteins). These concepts are applied to develop new therapeutic strategies for treating aging-related disorders, genetic diseases, and cancer.
Prior to joining the faculty at Stanford, Steven was a NIH and Burroughs CASI postdoctoral fellow advised by Prof. Carolyn Bertozzi at Stanford. His postdoctoral research developed approaches for targeted protein degradation from the extracellular space with lysosome targeting chimeras (LYTACs). He received his Ph.D. from Harvard University in 2016, where he worked with Prof. Eric Jacobsen on synthetic methods for the selective, catalytic difluorination of organic molecules and new approaches for generating and controlling reactive cationic intermediates in asymmetric catalysis. -
Matei Banu, MD
Clinical Assistant Professor, Neurosurgery
BioDr. Matei Banu is a fellowship-trained neurosurgeon at Stanford Health Care. He is also a clinical assistant professor in the Department of Neurosurgery at Stanford University School of Medicine.
Dr. Banu specializes in treating brain, skull base, and pituitary tumors. He also specializes in the management of the buildup of brain fluid (hydrocephalus) and related conditions. He is skilled in minimally invasive techniques, such as microscopic surgery (using microscopes and tiny instruments to repair small structures) and endoscopic techniques (using a thin, flexible tube to take pictures inside the body).
Dr. Banu often collaborates with rhinologists (doctors who diagnose and treat diseases of the nose and sinuses), head and neck surgeons, and otologists (doctors who diagnose and treat ear-related conditions). His goals are ensuring each patient receives comprehensive care and providing precise, compassionate treatment that enhances each patient’s quality of life.
His research interests include developing personalized treatment strategies for brain and skull base cancers. Dr. Banu is exploring how aggressive tumors grow, resist treatment, and evade the immune system. Using tumor samples from patients, Dr. Banu and his team are testing novel drugs to create more effective therapies.
Dr. Banu has published his research in several peer-reviewed journals, including Lancet Oncology, Cell, Nature Cell Biology, and Nature Communications. He has also contributed book chapters on topics like pediatric endoscopic skull base surgery and drug delivery for brain tumors. He has shared his findings at numerous national and international meetings in neurosurgery and oncology.
Dr. Banu is a member of the American Association of Neurological Surgeons, the Congress of Neurological Surgeons, the North American Skull Base Society, and the Society for Neuro-Oncology. -
Zhenan Bao
LCY: K. K. Lee Professor, Senior Fellow at the Precourt Institute for Energy and Professor, by courtesy, of Materials Science and Engineering, of Chemistry, and of Bioengineering
BioZhenan Bao joined Stanford University in 2004. She is currently a LCY: K.K. Lee Professor in Chemical Engineering, and with courtesy appointments in Chemistry, Bioengineering and Material Science and Engineering. She was the Department Chair of Chemical Engineering from 2018-2022 and in 2025. She founded the Stanford Wearable Electronics Initiative (eWEAR) and is the current faculty director. Bao received her Ph.D. degree in Chemistry from The University of Chicago in 1995 and joined Bell Labs, Lucent Technologies. She became a Distinguished Member of Technical Staff in 2001. Professor Bao currently has more than 800 refereed publications and more than 100 US patents with a Google Scholar H-index 245.
Bao is a member of the US National Academy of Sciences, National Academy of Engineering, the American Academy of Arts and Sciences and the National Academy of Inventors. Bao was elected a foreign member of the Chinese Academy of Science in 2021. She is a Fellow of AAAS, ACS, MRS, SPIE, ACS POLY and ACS PMSE.
Bao is a member of the Board of Directors for the Camille and Dreyfus Foundation from 2022. She served as a member of Executive Board of Directors for the Materials Research Society and Executive Committee Member for the Polymer Materials Science and Engineering division of the American Chemical Society. She co-founded C3 Nano Co. (acquired by Du Pont) and PyrAmes, which have produced products used in commercial smartphones and hospitals, respectively. Multiple inventions from her lab have been licensed and served as foundational technologies for several additional start-ups.
Bao was a recipient of the VinFuture Prize Female Innovator 2022, ACS Award of Chemistry of Materials 2022, MRS Mid-Career Award in 2021, AICHE Alpha Chi Sigma Award 2021, ACS Central Science Disruptor and Innovator Prize in 2020, ACS Gibbs Medal in 2020, the Wilhelm Exner Medal from the Austrian Federal Minister of Science in 2018, the L'Oreal UNESCO Women in Science Award North America Laureate in 2017. She was awarded the ACS Applied Polymer Science Award in 2017, ACS Creative Polymer Chemistry Award in 2013 ACS Cope Scholar Award in 2011. She is a recipient of the Royal Society of Chemistry Beilby Medal and Prize in 2009, IUPAC Creativity in Applied Polymer Science Prize in 2008.
In Stanford, Bao has pioneered molecular design concepts and fabrication processes to advance the scope and applications of skin-inspired electronics. Her group discovered nano confinement effect of conjugated polymers in polymer blends, which established the fundamental foundation for skin-inspired electronic materials and devices. Her work has resulted in new materials and device solutions for soft robotics, wearable and implantable electronics for precision health, precision mental health and advanced tools for understanding neuroscience and treatment of neurodegenerative diseases. Building on chemical insights, her group has developed foundational materials and devices that enabled a new generation of skin-inspired soft electronics. They provide unprecedented opportunities for understanding human health through developing monitoring, diagnosis and treatment tools. Some examples include: a neuromorphic e-skin that can sense force and temperature and directly communicate with brain, a wireless wound healing patch, a soft NeuroString for simultaneous neurochemical monitoring in the brain and gut, soft high-density electrophysiological recording array, a meta-learned skin sensor for detailed body movements, a reconfigurable self-healing electronic skin. -
Maria Barna
Associate Professor of Genetics
Current Research and Scholarly InterestsThe Barna Lab studies how gene expression is controlled at the level of translation to shape development, regeneration, and disease.For decades, ribosomes were viewed as uniform molecular machines that passively translate genetic information. Our work helped overturn this paradigm by demonstrating that ribosomes can differ in composition and function, giving rise to specialized translation programs that regulate cell fate and organismal development. By integrating genomics, mass spectrometry,
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Christopher O. Barnes
Assistant Professor of Biology and, by courtesy, of Structural Biology
Current Research and Scholarly InterestsResearch in our lab is aimed at defining the structural correlates of broad and potent antibody-mediated neutralization of viruses. We combine biophysical and structural methods (e.g., cryo-EM), protein engineering, and in vivo approaches to understand how enveloped viruses infect host cells and elicit antigen-specific immune responses. We are particularly interested in the co-evolution of HIV-1 and broadly-neutralizing IgG antibodies (bNAbs), which may hold the key to the development of an effective HIV-1 vaccine. In addition, we are investigating antibody responses to SARS-CoV-2 and related zoonotic coronaviruses (CoV), with the related goal of developing broadly-protective immunotherapies and vaccines against variants of concern and emerging CoV threats.
HIV-1; SARS-CoV-2; coronaviruses; cryo-EM; crystallography; vaccines; directed evolution -
Annelise E. Barron
Associate Professor of Bioengineering
Current Research and Scholarly InterestsBiophysical mechanisms of host defense peptides (a.k.a. antimicrobial peptides) and their peptoid mimics; also, molecular and cellular biophysics of human innate immune responses.
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Michele Barry, MD, FACP
Drs. Ben & A. Jess Shenson Professor, Senior Associate Dean, Global Health, Director, Center for Innovation in Global Health, Professor of Medicine, Senior Fellow at the Woods Institute and Professor, by courtesy, of Health Policy
Current Research and Scholarly InterestsAreas of research
Ethical Aspects of research conducted overseas
Clinical Tropical Diseases
Globalization's Impact upon Health Disparities
Human and Planetary Heath
Women Leadership -
Greg Barsh
Professor of Genetics and of Pediatrics, Emeritus
Current Research and Scholarly InterestsGenetics of color variation
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Michael Bassik
Associate Professor of Genetics
Current Research and Scholarly InterestsWe are an interdisciplinary lab focused on two major areas:(1) we seek to understand mechanisms of cancer growth and drug resistance in order to find new therapeutic targets(2) we study mechanisms by which macrophages and other cells take up diverse materials by endocytosis and phagocytosis; these substrates range from bacteria, viruses, and cancer cells to drugs and protein toxins. To accomplish these goals, we develop and use new technologies for high-throughput functional genomics.
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Glaivy Batsuli, MD
Associate Professor of Pediatrics (Hematology/Oncology)
Current Research and Scholarly InterestsHemophilia is a rare inherited X-linked bleeding disorder characterized by the deficiency of blood clotting proteins factor VIII or factor IX. These individuals are at risk for spontaneous bleeds and trauma or surgery-induced bleeding. There have been remarkable advancements in the management of hemophilia to prevent these bleeding episodes and improve quality of life. However, the presence of neutralizing antibodies, called inhibitors, still dictates access to novel therapies such as factor replacement for bleed management and now FDA-approved gene therapies. The Batsuli Lab is focused on elucidating mechanisms of the immune response to blood coagulation proteins in bleeding disorders in order to develop strategies and therapeutics for inhibitor prevention and tolerance induction.
Dr. Batsuli's clinical research interests also include clinical trial participation for novel therapeutics & interventions in bleeding disorders such as hemophilia and von Willebrand disease in addition to coagulation issues & outcomes in ultra-rare bleeding disorders and sickle cell disease. -
Marley Bauce
Managing Director, Geballe Laboratory for Advanced Materials
BioMarley Bauce joined Stanford in January 2023 as the Managing Director or the Geballe Laboratory for Advanced Materials (GLAM), one of 15 independent and transdisciplinary labs within the Office of the Vice Provost and Dean of Research. In this role, he provides managerial, financial, facilities, strategic planning, and research administrative support for GLAM’s faculty, trainees, and administrative staff, while optimizing the vibrancy, interconnectivity, and safety of materials research across the university.
Prior to joining Stanford, Marley spent a decade at Columbia University, first as the Director of Research Development within the Office of the Executive Vice President for Research, then most recently as the inaugural Associate Dean for Research at the Climate School, where he created and led an 11-person Office of Research spanning compliance, grants administration, federal affairs, and strategic initiatives. Over his tenure at Columbia, he directly supported and wrote “center grant” proposals awarded $100M+ in federal funding.
Marley has an MPA in Management & Finance from Columbia University, an MA in Environmental Studies from NYU, and a BA in Philosophy from Hampshire College. -
Fiona Baumer
Assistant Professor of Neurology (Pediatric Neurology)
Current Research and Scholarly InterestsCauses of Disturbed Cognition in Pediatric Epilepsy
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Mohsen Bayati
Carl and Marilynn Thoma Professor in the Graduate School of Business and Professor, by courtesy, of Electrical Engineering and of Radiation Oncology (Radiation Therapy)
On Partial Leave from 2026-09-01 To 2026-12-31Current Research and Scholarly Interests1) Healthcare management: I am interested in improving healthcare delivery using data-driven modeling and decision-making.
2) Network models and message-passing algorithms: I work on graphical modeling ideas motivated from statistical physics and their applications in statistical inference.
3) Personalized decision-making: I work on machine learning and statistical challenges of personalized decision-making. The problems that I have worked on are primarily motivated by healthcare applications. -
Tina Baykaner
Assistant Professor of Medicine (Cardiovascular Medicine)
BioTina Baykaner, MD, MPH is an Assistant Professor of Medicine in the Division of Cardiovascular Medicine and Cardiac Electrophysiology at Stanford University School of Medicine. She completed residency and fellowships in cardiovascular medicine and advanced heart failure at the University of California, San Diego, followed by fellowship training in cardiac electrophysiology at Stanford. She joined the Stanford faculty in 2018 and was promoted to Assistant Professor in 2023.
Dr. Baykaner’s research program focuses on atrial fibrillation (AF), cardio-oncology, and the integration of artificial intelligence and machine learning into cardiac electrophysiology. She is Principal Investigator of an NIH R01 investigating atrial fibrillation in patients with hematologic malignancies treated with tyrosine kinase inhibitors and previously led an NIH K23 award focused on personalizing AF management using machine learning. She also serves as co-investigator or consultant on multiple NIH-funded R01 projects in artificial intelligence, ventricular arrhythmias, and digital cardiovascular phenotyping. Her work spans AF mechanisms, ablation outcomes, digital health implementation, and equity in arrhythmia care.
She has authored over 200 peer-reviewed publications, book chapters, and abstracts, including more than 100 original research manuscripts, and has delivered over 100 invited lectures nationally and internationally. She served as a task force member for the 2024 EHRA/HRS/APHRS/LAHRS Expert Consensus Statement on Catheter and Surgical Ablation of Atrial Fibrillation and holds editorial leadership roles, including Associate Editor for the Journal of Interventional Cardiac Electrophysiology and editorial board positions with multiple electrophysiology journals.
Dr. Baykaner is Vice-Chair of the Heart Rhythm Society Digital Education Committee and serves on national program and grant review committees, including NIH/NHLBI study sections. She is actively engaged in mentorship across undergraduate, medical, graduate, and postdoctoral levels, with mentees who have received national awards and progressed to electrophysiology fellowship and faculty positions.
Her clinical practice focuses on catheter ablation of atrial and ventricular arrhythmias, supraventricular tachycardias, management of inappropriate sinus tachycardia, cardiac implantable electronic device implantation and extraction, and advanced rhythm management strategies in complex patient populations. -
Philip Beachy
The Ernest and Amelia Gallo Professor, Professor of Urology, of Developmental Biology and, by courtesy, of Chemical and Systems Biology
Current Research and Scholarly InterestsFunction of Hedgehog proteins and other extracellular signals in morphogenesis (pattern formation), in injury repair and regeneration (pattern maintenance). We study how the distribution of such signals is regulated in tissues, how cells perceive and respond to distinct concentrations of signals, and how such signaling pathways arose in evolution. We also study the normal roles of such signals in stem-cell physiology and their abnormal roles in the formation and expansion of cancer stem cells.
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Christopher Beaulieu M.D., Ph.D.
Professor of Radiology (Musculoskeletal Imaging), Emeritus
Current Research and Scholarly InterestsInformatics and image processing techniques that provide infrastructure for diagnosis in musculoskeletal imaging. Decision support for improving accuracy of bone tumor diagnosis. Improved methods for MRI in the musculoskeletal system.
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Barry Behr, Ph.D., H.C.L.D.
Professor of Obstetrics and Gynecology (Reproductive Endocrinology and Infertility), Emeritus
Current Research and Scholarly InterestsDevelopment of improved embryo culture conditions in vitro. Blastocyst cultures. Embryo metabolism in vitro. Embryo maternal dialogue. Clinical application and integration of extended embryo culture systems. Monozygotic twinning. Prevention of multiple pregnancy. Sperm motility enhancers. Fluorescent and non-fluorescent markers of sperm morphology and viablility. Oocyte cryopreservation. Fertility preservation. Improving IVF outcome.
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Corinne Beinat
Assistant Professor of Radiology (Molecular Imaging Program at Stanford)
Current Research and Scholarly InterestsThe focus of my research is to develop novel imaging and treatment strategies to detect and better manage cancer. This approach relies first on the identification and validation of molecular targets and biomarkers that are linked with underlying the underlying biology driving the initiation and progression of cancers. We then develop novel small molecule based radiotracers to monitor fundamental molecular and cellular processes occurring in living subjects using positron emission tomography (PET) with the goal of improving cancer diagnosis and management. We additionally develop novel peptide based theragnostic agents for stratification of patients with high receptor expression, treatment with targeted radionuclide therapy, and subsequent monitoring of treatment response. Our overall goal is to develop multiple clinically translatable strategies to improve cancer diagnosis, management, and outcomes.
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Gill Bejerano
Professor of Developmental Biology, of Computer Science and of Pediatrics (Genetics)
Current Research and Scholarly Interests1. Automating monogenic patient diagnosis.
2. The genomic signatures of independent divergent and convergent trait evolution in mammals.
3. The logic of human gene regulation.
4. The reasons for sequence ultraconservation.
5. Cryptogenomics to bridge medical silos.
6. Cryptogenetics to debate social injustice.
7. Managing patient risk using machine learning.
8. Understanding the flow of money in the US healthcare system. -
Michael Edward Bellas
Licensing Associate, Life Sciences, Office of Technology Licensing (OTL)
BioMichael joined OTL in November 2024 as a Licensing Associate on the Life Sciences team. Prior to joining Stanford, Michael worked in business development within the life sciences industry, focusing on strategy, patent filing, and licensing opportunities. He also prepared and negotiated agreements for technology licensing and collaboration with academic partners. Michael holds a B.S. from the University of California, Berkeley.
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Sean Bendall
Associate Professor of Pathology
Current Research and Scholarly InterestsOur goal is to understand the mechanisms regulating the development of human systems. Drawing on both pluripotent stem cell biology, hematopoiesis, and immunology, combined with novel high-content single-cell analysis (CyTOF – Mass Cytometry) and imagining (MIBI-Multiplexed Ion Beam Imaging) we are creating templates of ‘normal’ human cellular behavior to both discover novel regulatory events and cell populations as well as understand dysfunctional processes such as cancer.
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Eran Bendavid
Professor of Medicine (Primary Care and Population Health), of Health Policy, Senior Fellow at the Woods Institute for the Environment and, by courtesy, at the Freeman Spogli Institute for International Studies
Current Research and Scholarly InterestsEffect of global health policies on health of individuals in developing countries, global health, HIV and TB.
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Jade Benjamin-Chung
Assistant Professor of Epidemiology and Population Health
Current Research and Scholarly InterestsOur research aims to improve population health by creating high quality evidence about what health interventions work in whom and where, when, and how to implement them. Most of our research is focused on environmentally-mediated infectious diseases, including malaria, diarrhea, soil-transmitted helminths, and influenza. Our focus is on improving the health of vulnerable populations from low-resource settings, both domestically and internationally. We use a variety of epidemiologic, computational, and statistical methods, including causal inference and machine learning methods.
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Christopher Bennett
Assistant Professor of Emergency Medicine (Adult Clinical/Academic)
BioI am an emergency physician and researcher at Stanford. I am faculty in the Department of Emergency Medicine, the Stanford Institute for Human-Centered AI (HAI), the Center for AI in Medicine & Imaging (AIMI), and the Center for Digital Health (CDH). My research group focuses on using data to guide policy and improve patient outcomes.
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Stacey Bent
Jagdeep & Roshni Singh Professor in the School of Eng, Professor of Energy Science and Eng, Senior Fellow at Precourt & Prof, by courtesy, of Electrical Eng, Materials Sci Eng & Chemistry
BioThe research in the Bent laboratory is focused on understanding and controlling surface and interfacial chemistry and applying this knowledge to a range of problems in semiconductor processing, micro- and nano-electronics, nanotechnology, and sustainable and renewable energy. Much of the research aims to develop a molecular-level understanding in these systems, and hence the group uses of a variety of molecular probes. Systems currently under study in the group include functionalization of semiconductor surfaces, mechanisms and control of atomic layer deposition, molecular layer deposition, nanoscale materials for light absorption, interface engineering in photovoltaics, catalyst and electrocatalyst deposition.
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Daniela Berdnik
Biosafety & Biosecurity Specialist 3, Environmental Health and Safety (EH&S)
Current Role at StanfordBiosafety & Biosecurity Specialist
High Containment Program Lead -
Jonathan S. Berek, MD, MMSc
Laurie Kraus Lacob Professor
BioLaurie Kraus Lacob Professor
Stanford University School of Medicine
Founding Director, Stanford Women’s Cancer Center
Senior Advisor, Stanford Cancer Institute
Co-Chair, Senior Academy at Stanford Medicine
President, Stanford University Phi Beta Kappa
Director, MedArts Films
Faculty Director, Health Communication
Stanford Center for Health Education
A Stanford faculty member since 2005, Professor Berek is renowned for his many contributions to and expertise in gynecologic oncology, especially surgical innovation and techniques, and his research in immunology and immunotherapy. Through many laboratory and clinical investigations, he pioneered the use of regionally-administered immunotherapy in ovarian cancer patients. His early laboratory research focused on fundamental mechanisms of cancer immunology, elucidating growth regulatory pathways for cytokines and their receptors. His current research focuses on clinical trials of novel therapies and immunotherapies for ovarian cancer and collaborations on new diagnostics, screening techniques, and genetics.
An author and editor, Professor Berek has published more than 360 peer-reviewed manuscripts in the scientific literature, and numerous book chapters and monographs. His books, Berek & Hacker’s Gynecologic Oncology, now in its 7th edition, and Berek & Novak’s Gynecology, in its 17th edition, are leading texts in the field. He is the Series Editor for Operative Techniques in Gynecologic Surgery, for which five textbooks on various subspecialty topics in Obstetrics and Gynecology have been published. He serves as the Editor-in-Chief for Current Opinion in Obstetrics & Gynecology, and he is a former Editor-in-Chief of ASCO Connection, published by the American Society of Clinical Oncology.
Professor Berek received his Bachelor of Arts degree in English Literature and Theatre Arts, and a Master of Medical Sciences degree in biomedical sciences from Brown University. After earning his Doctor of Medicine from Johns Hopkins University School of Medicine, he completed an internship and residency at Harvard Medical School, Brigham & Women’s Hospital. Before moving to Stanford, he was on the faculty at the UCLA School of Medicine for more than two decades.
Professor Berek has received many honors and accolades. Dr. Berek is the 2019 Lifetime Achievement Honoree of the American Cancer Society for his many accomplishments in women’s cancer treatment and research. In 2022, he received a Lifetime Achievement Award from the International Society of Gynecologic Cancer for his contributions to the field of gynecologic oncology.
In addition to his medical career, Professor Berek is an active documentary filmmaker—creating and directing films on a variety of medical topics that are highlighted by patient stories. He is the Director and Producer of MedArts Films https://vimeo.com/medarts/videos. He directed a series of films for the Stanford Office of Medical Development, and many short films for the Stanford Center for Health Education that are found on YouTube at the Stanford Medicine Health Shelf. https://www.youtube.com/@Stanford_CHE/playlists
In collaboration with the Under One Umbrella Committee and Stanford Medical Center Development, Professor Berek has led a highly successful fundraising program for the Stanford Women’s Cancer Center. Since 2009, these Under One Umbrella philanthropy efforts have generated substantial support for innovative research programs in women’s cancer via concerts headlined by celebrities, including Nicole Kidman, Keith Urban, Trisha Yearwood, Garth Brooks, Tom Hanks, Rita Wilson, Carrie Underwood, Sheryl Crow, Vince Gill, Amy Grant, Darlene Love, and Harry Connick Jr.
https://www.facebook.com/StanfordWomensCancerCenter/ -
Jonathan Berger
Denning Family Provostial Professor
BioJonathan Berger is the Denning Family Provostial Professor in Music at Stanford University, where he teaches composition, music theory, and cognition, and directs the Center for Computer Research in Music and Acoustics (CCRMA).
Jonathan is a 2017 Guggenheim Fellow and a 2016 winner of the Rome Prize.
He was the founding co-director of the Stanford Institute for Creativity and the Arts (SICA, now the Stanford Arts Institute) and founding director of Yale University’s Center for Studies in Music Technology
Described as “gripping” by both the New York Times and the Chicago Tribune, “poignant”, “richly evocative” (San Francisco Chronicle), “taut, and hauntingly beautiful” (NY Times), Jonathan Berger’s recent works deal with both consciousness and conscience. His monodrama, My Lai, toured internationally. The Kronos Quartet's recording was released by Smithsonian/Folkways. His opera, The Ritual of Breath is the Rite to Resist was performed at Lincoln Center in July 2024. Other recent premiers include Hajar Yasini for narrator, string quartet and video (premiered by the Kronos Quartet), and Mekong:Soul (co-composed with Van Anh Vo) which was performed at the Kennedy Center and in Houston.
Thrice commissioned by The National Endowment for the Arts, Berger’a recent commissions include The Mellon and Rockefeller Foundations, Chamber Music Society, Lincoln Center, and Chamber Music America.
In addition to composition, Berger is an active researcher with over 80 publications in a wide range of fields relating to music, science and technology and has held research grants from DARPA, the Wallenberg Foundation, The National Academy of Sciences, the Keck Foundation, and others.
Berger is the PI of a major grant from the Templeton Religion Trust to study how music and architecture interact to create a sense of awe. -
Karol Berger
Osgood Hooker Professor in Fine Arts, Emeritus
BioKarol Berger (Ph.D. Yale 1975) is the Osgood Hooker Professor in Fine Arts, Emeritus at the Department of Music, as well as an affiliated faculty at the Department of German Studies, and an affiliated researcher at the Europe Center. A native of Poland, he has lived in the U.S. since 1968 and taught at Stanford since 1982. He has received fellowships from the National Endowment for the Humanities, Alexander von Humboldt Foundation, American Council of Learned Societies, the Rockefeller Foundation’s Bellagio Study and Conference Center, and Stanford Humanities Center. In 2011-12 he has been the EURIAS Senior Fellow at the Institut für die Wissenschaften vom Menschen in Vienna. In 2005-2006, he was the Robert Lehman Visiting Professor at Villa I Tatti, The Harvard University Center for Italian Renaissance Studies. He is a foreign member of the Polish Academy of Sciences, an honorary member of the American Musicological Society, a member of the American Academy of Arts and Sciences, a foreign member of the Polish Academy of Arts and Sciences (Cracow), and a foreign member of the Academia Europaea. His Musica Ficta received the 1988 Otto Kinkeldey Award of the American Musicological Society, his Bach's Cycle, Mozart's Arrow the 2008 Marjorie Weston Emerson Award of the Mozart Society of America, and his Beyond Reason the 2018 Otto Kinkeldey Award of the American Musicological Society. In 2011 he received the Glarean Prize from the Swiss Musicological Society and in 2014 the Humboldt Research Award of the Alexander von Humboldt Foundation.
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Miles Berger
Professor of Anesthesiology, Perioperative and Pain Medicine (MSD)
BioI am a neuroanesthesiologist and translational human neuroscientist. Clinically, I care for patients undergoing brain and spine surgery, and have an interest in optimizing anesthesia care (and postoperative cognitive outcomes) for older surgical patients.
My research team studies mechanisms of perioperative neurocognitive disorders (such as delirium) in older adults, the relationship between anesthetic brain sensitivity (as measured by EEG) and preclinical/prodromal age-related changes in brain structure and function, and mechanisms by which the APOE4 allele leads to increased Alzheimer's Disease risk and neurocognitive decline. Together with collaborators, we use a transdisciplinary approach combining molecular/cellular assays (including ELISAs, proteomics, metabolomics, and flow cytometry) on pre- and post-operative CSF and plasma samples from older surgical surgical patients, functional and structural MRI neuroimaging, pre- and intra-operative EEG recordings, genetics (and epigenetics), and pre and postoperative delirium screening and cognitive testing. Overall, our hope is that the combination of these different methods will allow us to obtain insights into the mechanisms of perioperative neurocognitive disorders that could not be obtained by any single method alone.
Our group values mentorship, and we are happy to talk with prospective undergraduate, graduate or post-doctoral students with an interest in our work. -
Dominique Bergmann
Shirley R. and Leonard W. Ely, Jr. Professor of the School of Humanities and Sciences
Current Research and Scholarly InterestsWe use genetic, genomic and cell biological approaches to study cell fate acquisition, focusing on cases where cell fate is correlated with asymmetric cell division.
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Matthew Berman
Intellectual Property Manager, Life Sciences, Office of Technology Licensing (OTL)
BioMat is a patent attorney and also has many years of experience working as a university technology licensing professional. Mat advises his OTL colleagues on patent law, IP strategy, and agreement drafting.