Stanford University
Showing 5,781-5,800 of 7,899 Results
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James Reichert
Professor of East Asian Languages and Cultures
BioJames Reichert is Associate Professor of Modern Japanese Literature in the Department of East Asian Languages and Cultures at Stanford University. He has previously published In the Company of Men: Representations of Male-Male Sexuality in Meiji Literature (Stanford University Press, 2006). His forthcoming book, Literature for the Masses: Japanese Period Fiction, 1913-1941 (University of Hawai'i Press, 2025), explores popular adventure tales about premodern swordsmen. He has also written on prewar Japanese detective fiction, silent Japanese film, Edo-period books, Boys’ Love comics, and Japanese Romanticism.
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Daryn Reicherter
Clinical Professor, Psychiatry and Behavioral Sciences
BioDr. Reicherter the director of the Human Rights in Trauma Mental Health Laboratory.
He has expertise in the area of cross-cultural trauma psychiatry, having spent more than a decade dedicated to providing a combination of administrative and clinical services in trauma mental health locally and internationally. He is on the List of Experts for the Extraordinary Chambers in the Courts of Cambodia and for the United Nations’ International Criminal Court. He is on the Fulbright Specialists Roster for his work in international trauma mental health. He is a Senior Fellow at the Center for Innovations in Global Health at Stanford University. He has created and cultivated new clinical rotations for residency education and medical school education in the community clinics that he operates. And he has created new opportunities for resident, medical student, and undergraduate education in Global Mental Health.
He has also been involved in the creation of clinical mental health programs for underserved populations in the San Francisco Bay Area. He is the Faculty Adviser for the Stanford’s Free Clinic Mental Health Program.
After receiving degrees in Psychobiology and Philosophy from the University of California at Santa Cruz, Dr. Reicherter completed his doctorate in medicine at New York Medical College. He completed internship and residency and served as Chief Resident at Stanford University Hospitals and Clinics. -
Kate Reidy
Assistant Professor, Materials Science and Engineering
BioKate Reidy will begin as an Assistant Professor of Materials Science and Engineering at Stanford in September 2026. Her research takes a ‘bottom up' approach to nanoscale design, tailoring material properties by understanding and manipulating their atomic structure. She combines advanced characterization with in situ microscopy to elucidate growth mechanisms, chemical composition, and response to stimuli at the atomic scale.
Her research group aims to push the limits of nanoscale engineering by observing and controlling atomic-scale kinetic and thermodynamic phenomena such as adsorption, diffusion, nucleation, defect and interface formation - mapping such structural dynamics to quantum, energy, and opto-electronic properties. She is broadly interested in the functional utilization of quantum properties of nanomaterials in our classical world.
Prior to joining Stanford, Kate was a Miller Postdoctoral Fellow at UC Berkeley and Lawrence Berkeley National Lab. She completed her PhD in Materials Science & Engineering at MIT as a MIT Energy initiative and William Asbjornsen Albert Memorial Fellow, entitled 'Atomic-Scale Design at the 2D/3D Interface using Electron Microscopy'. She received her B.Sc in Nanoscience, Physics, and Chemistry of Advanced Materials from Trinity College Dublin, Ireland. Her work has been recognized by the MIT School of Engineering, Microscopy Society of America, Materials Research Society Gold Award, 'Best Doctoral Thesis' Award at MIT DMSE. -
Richard J. Reimer, MD
Professor of Neurology and Neurological Sciences (Adult Neurology)
Current Research and Scholarly InterestsReimer Lab interests
A primary interest of our lab is to understand how nerve cells make and recycle neurotransmitters, the small molecules that they use to communicate with each other. In better defining these processes we hope to achieve our long-term goal of identifying novel sites for treatment of diseases such as epilepsy and Parkinson Disease. In our studies on neurotransmitter metabolism we have focused our efforts on transporters, a functional class of proteins that move neurotransmitters and other small molecules across membranes in cells. Transporters have many characteristics that make them excellent pharmacological targets, and not surprisingly some of the most effective treatments for neuropsychiatric disorders are directed at transporters. We are specifically focusing on two groups of transporters vesicular neurotransmitter transporters that package neurotransmitters into vesicles for release, and glutamine transporters that shuttle glutamine, a precursor for two major neurotransmitters glutamate and GABA, to neurons from glia, the supporting cells that surround them. We are pursuing these goals through molecular and biochemical studies, and, in collaboration with the Huguenard and Prince labs, through physiological and biosensor based imaging studies to better understand how pharmacological targeting of these molecules will influence neurological disorders.
A second interest of our lab is to define mechanism underlying the pathology of lysosomal storage disorders. Lysosomes are membrane bound acidic intracellular organelles filled with hydrolytic enzymes that normally function as recycling centers within cells by breaking down damaged cellular macromolecules. Several degenerative diseases designated as lysosomal storage disorders (LSDs) are associated with the accumulation of material within lysosomes. Tay-Sachs disease, Neimann-Pick disease and Gaucher disease are some of the more common LSDs. For reasons that remain incompletely understood, these diseases often affect the nervous system out of proportion to other organs. As a model for LSDs we are studying the lysosomal free sialic acid storage disorders. These diseases are the result of a defect in transport of sialic acid across lysosomal membranes and are associated with mutations in the gene encoding the sialic acid transporter sialin. We are using molecular, genetic and biochemical approaches to better define the normal function of sialin and to determine how loss of sialin function leads to neurodevelopmental defects and neurodegeneration associated with the lysosomal free sialic acid storage disorders. -
Navi Reiners, MD, MPH
Adjunct Clinical Assistant Professor, Obstetrics & Gynecology - General
BioDr. Navi Reiners is board certified in Obstetrics and Gynecology. She is dedicated to providing comprehensive obstetrical and gynecological care to women of all ages in a compassionate and patient-centered manner. Her clinical interests include health education and wellness, pregnancy, adolescent health, contraception and minimally invasive surgery. When she is not taking care of patients, she enjoys reading, baking, Pilates and exploring her native Bay Area with her husband and young children.
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Martin Reinhard
Professor (Research) of Civil and Environmental Engineering, Emeritus
BioReinhard studies the fate of organic substances in the subsurface environment and develops technologies for the remediation of groundwater contaminated with chlorinated and non-chlorinated hydrocarbon compounds. His research is concerned with mechanistic aspects of chemical and biological transformation reactions in soils, natural waters, and treatment systems.
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Olaf Reinhartz
Current Research and Scholarly Interests1. Mechanical circulatory support in failing Fontan circulation
2. Pathophysiologic response to fetal cardiac surgery.
3. Various clinical projects in pediatric cardiothoracic surgery -
Allan L. Reiss
Howard C. Robbins Professor of Psychiatry and Behavioral Sciences and Professor of Radiology
Current Research and Scholarly InterestsMy laboratory, the Center for Interdisciplinary Brain Sciences Research (CIBSR), focuses on multi-level scientific study of individuals with typical and atypical brain structure and function. Data are obtained from genetic analyses, structural and functional neuroimaging studies, assessment of endocrinological status, neurobehavioral assessment, and analysis of pertinent environmental factors. Our overarching focus is to model how brain disorders arise and to develop disease-specific treatments.
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Marissa Reitsma
Assistant Professor of Health Policy
BioMarissa Reitsma, PhD, is an Assistant Professor of Health Policy at Stanford University School of Medicine. She obtained her PhD in Health Policy at Stanford in 2024, during which time she was a Knight-Hennessy Scholar, Stanford Data Science Scholar, and NSF Graduate Research Fellow. Previously, she worked on the Global Burden of Disease Study at the Institute for Health Metrics and Evaluation. Reitsma develops computational models to quantify disease burden, evaluate the benefits and costs of interventions, and support evidence-based policies across a range of priorities in public health, with a focus on health equity.
Reitsma aims to build simulation models that integrate the overlapping risk factors, social determinants, and syndemic conditions that disproportionately impact marginalized populations and contribute to health inequities. She also investigates the potential for multimodal data synthesis to inform these models, improve population health decision-making, and reduce health disparities. Her work spans multiple communicable and non-communicable conditions linked to behavioral risk factors, including tobacco use, drug use, and obesity. During the COVID-19 pandemic, she collaborated closely with state and local public health agencies to inform their decision-making.