School of Medicine


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  • Nathan Lo

    Nathan Lo

    Assistant Professor of Medicine (Infectious Diseases) and, by courtesy, of Epidemiology and Population Health

    Current Research and Scholarly InterestsOur research group is interested in studying the transmission of infectious diseases and impact of public health interventions with an ultimate goal of informing public health policy. We study a diverse set of pathogens, both domestically and internationally, including vaccine-preventable infections (including COVID-19) and neglected parasitic diseases (such as schistosomiasis). Our group applies diverse computational methodologies, including tools from fields of epidemiology, mathematical and statistical modeling, simulation, and policy analysis.

    A large emphasis of our work is translating scientific evidence into public health policy. Our track record includes multiple studies that have changed policy in the fields of neglected parasitic diseases and COVID-19. We work closely with policy organizations like the World Health Organization and the California Department of Public Health. Nathan was the lead writer of the World Health Organization guidelines on schistosomiasis (2022) and strongyloidiasis (2024).

    Our current research focuses on the following areas:
    (1) Vaccine-preventable infectious diseases (including COVID-19 and measles) in the United States, with a focus on studying vaccines, transmission dynamics, and re-emergence of vaccine-eliminated diseases
    (2) Public health strategies for control and elimination of globally important neglected infectious diseases, such as helminths infections (schistosomiasis, strongyloidiasis) and typhoid fever

    Our current NIH funded projects include:
    (1) Real-time predictive modeling for public health departments to control infectious diseases (DP2 AI170485, PI: Lo)
    (2) Precision mapping of Schistosoma mansoni risk for targeted public health control and elimination (R01 AI179771, PI: Lo)

    Hiring
    We are seeking to fill multiple research positions at all levels. Candidates interested in working on computational public health research related to infectious diseases with a strong quantitative background are highly encouraged to apply. If you an interested, please submit a cover letter, CV, and names of two references to Nathan.Lo@stanford.edu.

  • James Lock

    James Lock

    Eric Rothenberg, MD Professor and Professor, by courtesy, of Pediatrics

    Current Research and Scholarly InterestsJames Lock, MD, Ph.D. is Professor of Child Psychiatry and Pediatrics in the Department of Psychiatry and Behavioral Sciences at Stanford University School of Medicine where he has taught since 1993. He is board certified in adult as well as child and adolescent psychiatry. He directs the eating disorder program in Child Psychiatry and is active in treatment research for children and adolescents with eating disorders.

  • Anne Juliana Lockman

    Anne Juliana Lockman

    Adjunct Clinical Associate Professor, Psychiatry and Behavioral Sciences

    BioDr. Lockman is Adjunct Clinical Associate Professor of Neuropsychiatry in the Department of Psychiatry & Behavioral Sciences at Stanford. She directs the Functional Neurologic Disorder (FND) Track at La Selva in Palo Alto, within their state-of-the-art residential and partial hospitalization programs. She completed residencies in both Neurology at the University of Virginia and Psychiatry at Stanford Hospital & Clinics. Her clinical activities include providing pharmacologic and behavioral care for clients with psychiatric and behavioral conditions in the context of neurological illness, including epilepsy, stroke, movement disorders and others. Professional goals include the advancement of clinical care, research and access for clients suffering from neuropsychiatric conditions, including FND and related disorders.

  • Michael Loecher

    Michael Loecher

    Sr Research Engineer, Rad/Radiological Sciences Laboratory

    BioMy research focuses primarily on improving methods for measuring flow and motion with MRI. My research interests range from image acquisition and reconstruction to error correction and post processing strategies.

  • Andreas Loening

    Andreas Loening

    Associate Professor of Radiology (Body MRI)

    Current Research and Scholarly InterestsMy lab focuses on expanding the capability of MR and PET/MR as it relates to applications in body imaging. Clinical research aims include the application of new or improved MR sequences to increase the speed, robustness, and diagnostic capability of body MR. Translation research aims include exploring new MR contrast mechanisms and contrast agents, such as for the stratification of cancer within the prostate and the evaluation of the lymphatic system.

  • Juanita S. Loftus

    Juanita S. Loftus

    Clinical Assistant Professor, Pediatrics - General Pediatrics

    BioClinical Focus
    ____

    Pediatrics


    Academic Appointment
    ____

    Clinical Assistant Professor, Pediatrics-General Pediatrics

    Professional Education
    _____

    Board Certification: American Board of Pediatrics, Pediatrics (1989)
    Residency: St. Louis Children's Hospital, St. Louis, MO (1989)
    Medical Education: Washington University School of Medicine, St. Louis, MO (1986)

  • Daniel S Logan, BA

    Daniel S Logan, BA

    Research Data Analyst 1, Stanford-Surgery Policy Improvement Research and Education Center

    Current Role at StanfordResearch Data Analyst I at the S-SPIRE Center, Department of Surgery, Stanford University School of Medicine

  • Kyle Loh

    Kyle Loh

    Associate Professor of Developmental Biology (Stem Cell)

    BioHow the richly varied cell-types in the human body arise from one embryonic cell is a biological marvel and mystery. We have mapped how human embryonic stem cells develop into over twenty different human cell-types. This roadmap allowed us to generate enriched populations of human liver, bone, heart and blood vessel cells in a Petri dish from embryonic stem cells. Each of these human cells could regenerate their cognate tissue upon injection into respective mouse models, with relevance to regenerative medicine. In addition to developmental and stem cell biology, we have an emerging interest in exploring deadly biosafety level 4 viruses together with our collaborators.

    Kyle attended the County College of Morris and Rutgers, and received his Ph.D. from Stanford (working with Irving Weissman), with fellowships from the Hertz Foundation, National Science Foundation and Davidson Institute for Talent Development. He then continued as a Siebel Investigator, and later, as an Assistant Professor and The Anthony DiGenova Endowed Faculty Scholar at Stanford, where he is jointly appointed in the Department of Developmental Biology and Institute for Stem Cell Biology & Regenerative Medicine. Kyle is a Packard Fellow, Pew Scholar, Human Frontier Science Program Young Investigator and Baxter Foundation Faculty Scholar, and his research has been recognized by the NIH Director's Early Independence Award, ISSCR Early Career Impact Award, Forbes 30 Under 30, Harold Weintraub Graduate Award, Hertz Foundation Thesis Prize and A*STAR Investigatorship.

  • Quentin Loisel

    Quentin Loisel

    Postdoctoral Scholar, SCRDP/ Heart Disease Prevention

    BioQuentin Loisel is a postdoctoral researcher at the Meta-Research Innovation Center at Stanford (METRICS), where his work focuses on how artificial intelligence is transforming scientific practice and how researchers can use AI to produce better, more robust, and more equitable science. His broader agenda is to help define a hybrid model of scientific inquiry that deliberately and transparently combines human judgment and artificial intelligence.

    His research sits at the intersection of artificial intelligence, epistemology of science, and research systems. He studies how AI tools reshape knowledge production across the research lifecycle, from problem formulation and data analysis to writing, peer review, and governance, and examines the epistemic, methodological, and institutional consequences of human–AI collaboration in science. His work aims to move beyond risk-focused or purely technical perspectives by developing evidence-based, researcher-centric models for integrating AI into everyday scientific practice.

    Before joining Stanford, he completed a Marie Skłodowska-Curie PhD on digital technologies for co-creation, combining cognitive science, collective intelligence, and participatory research. He has co-funded and is coordinating the Artificial Intelligence working group of the Marie Curie Alumni Association (MCAA), which is a researcher-driven community of practice on AI in research. He also advises a social company, called Health Cascade, on how to integrate AI in teams to solve complex societal problems.

  • Yashas Ullas Lokesha

    Yashas Ullas Lokesha

    Postdoctoral Scholar, Radiology

    BioDr. Yashas Ullas Lokesha is a Postdoctoral Fellow in the Department of Radiology at Stanford University, working in Professor Heike E. Daldrup Link’s laboratory since 2024. His research focuses on clinical and translational molecular imaging, with a particular interest in developing and applying artificial intelligence algorithms for the automated detection and monitoring of pediatric cancers, including lymphoma and sarcomas, using PET and MRI.

    He has contributed extensively to the development of imaging techniques for the noninvasive detection of cellular senescence and has a strong interest in musculoskeletal imaging. His work aims to advance precision medicine by integrating innovative imaging science with AI-driven diagnostic tools.

    Before joining Stanford, Dr. Yashas served as an Assistant Professor in the Department of Radiology at Sri Devaraj Urs Medical College in India.

  • Avinash Londhe

    Avinash Londhe

    Postdoctoral Scholar, Pathology

    BioDr. Avinash Londhe is a postdoctoral researcher in Dr. Katrin Svensson’s lab in the Department of Pathology at Stanford University, where he investigates the complex mechanisms linking cancer, metabolism, and obesity. His research focuses on understanding how orphan peptide hormones regulate metabolic pathways and identifying novel receptor-peptide interactions. Driven by a passion for translational science, Dr. Londhe is committed to translating fundamental discoveries into real-world solutions that improve patient outcomes.

    During his doctoral training in Dr. Benoit Boivin’s lab at SUNY Polytechnic Institute, Dr. Londhe gained in-depth expertise in molecular mechanisms underlying metabolic disorders and cancer. His work contributed to the development of therapeutic strategies aimed at metabolic dysfunction. In addition to research, he excelled at managing laboratory operations and mentoring both graduate and undergraduate students, fostering a dynamic and collaborative research environment.

    Currently, Dr. Londhe is broadening his research toolkit by integrating bioinformatics, molecular biology, and biophysical techniques into his experimental approaches. His goal is to address critical challenges in cancer metabolism and metabolic diseases through innovative research.

    Dr. Londhe aspires to secure a faculty position at a leading university, where he can advance impactful research, mentor emerging scientists, and continue driving scientific innovation.

  • Adrienne H. Long, MD, PhD

    Adrienne H. Long, MD, PhD

    Instructor, Pediatrics - Hematology & Oncology

    BioAdrienne H. Long, MD, PhD is an Instructor and Physician-Scientist in the Division of Pediatric Hematology and Oncology at the Lucile Packard Children's Hospital, Stanford. Clinically, she completed her MD at Northwestern University, her pediatrics residency at Boston Children’s Hospital, and her oncology fellowship training at Stanford University. Dr. Long sees patients with leukemias/lymphomas, and has a clinical interest in T cell malignancies.

    Dr. Long received her PhD in Microbiology/Immunology through a National Institutes of Health (NIH) – Northwestern University partnership, where she worked with Dr. Crystall Mackall to advance CAR T cell therapies. Her influential thesis work was the first to identify T cell exhaustion as a critical factor limiting efficacy of CAR therapies (Long et al., Nature Medicine, 2015). She continued her research training with Dr. Nicholas Haining at the Dana Farber Cancer Institute during residency and is currently conducting her post-doctoral research with Dr. Mark Davis at Stanford.

    Dr. Long’s research interests lie at the intersection of the immune system and cancer therapies. She is currently studying how thymic selection, designed to prevent auto-immunity, may also inhibit anti-tumor immunity in children. She is also interested in how immunotherapies that have revolutionized how we treat cancer can impact the developing pediatric immune system long term.

  • Jonathan Z. Long

    Jonathan Z. Long

    Associate Professor of Pathology

    BioDr. Jonathan Long is an Associate Professor of Pathology and an Institute Scholar of Stanford ChEM-H (Chemistry, Engineering & Medicine for Human Health). His laboratory studies the molecular mechanisms of mammalian energy homeostasis. Dr. Long is the recipient of the Alfred P. Sloan Research Fellowship in Chemistry, the Breakthrough Sciences Award from the Ono Pharma Foundation, and the NIDDK Catalyst Award. Prior to arriving to Stanford, Dr. Long completed his Ph.D. in Chemistry at Scripps Research and his postdoctoral work at Harvard Medical School.

  • Sharon R. Long

    Sharon R. Long

    William C. Steere, Jr. - Pfizer Inc. Professor of Biological Sciences and Professor, by courtesy, of Biochemistry

    Current Research and Scholarly InterestsBiochemistry, genetics and cell biology of plant-bacterial symbiosis

  • Teri A Longacre

    Teri A Longacre

    Richard L. Kempson, MD, Professor in Surgical Pathology

    Current Research and Scholarly InterestsGynecological, breast and gastrointestinal pathology with major emphasis on ovarian cancer and ovarian tumors of low malignant potential. Pathology of familial and hereditary breast-ovarian-GI cancer.

  • Dr. Michael T. Longaker

    Dr. Michael T. Longaker

    Deane P. and Louise Mitchell Professor in the School of Medicine and Professor, by courtesy, of Materials Science and Engineering

    Current Research and Scholarly InterestsWe have six main areas of current interest: 1) Cranial Suture Developmental Biology, 2) Distraction Osteogenesis, 3) Fibroblast heterogeneity and fibrosis repair, 4) Scarless Fetal Wound Healing, 5) Skeletal Stem Cells, 6) Novel Gene and Stem Cell Therapeutic Approaches.

  • Frank M. Longo, MD, PhD

    Frank M. Longo, MD, PhD

    George E. and Lucy Becker Professor of Medicine and Professor, by courtesy, of Neurosurgery

    Current Research and Scholarly InterestsClinical interests include Alzheimer's disease and Huntington's disease and the development of effective therapeutics for these disorders. Laboratory interests encompass the elucidation of signaling mechanisms relevant to neurodegenerative disorders and the development of novel small molecule approaches for the treatment of neurodegenerative and other neurological disorders.

  • Isaac Longobardi

    Isaac Longobardi

    MD Student, expected graduation Spring 2030

    BioIsaac Longobardi, from Brooklyn, New York, is pursuing an MD at Stanford School of Medicine. He received his bachelor’s degree in social anthropology from Harvard College. Isaac aspires to transform long-term care services and delivery models for individuals with frailty, chronic illness, and mental and behavioral health conditions and their communities. Between 2022 and 2025, Isaac helped to launch and directed the Moving Forward Nursing Home Quality Coalition—a representative group of nursing home stakeholders working to advance recommendations from “The National Imperative to Improve Nursing Home Quality,” a landmark 2022 report by the National Academies of Sciences, Engineering, and Medicine. Prior to that, he piloted multigenerational living while working as a volunteer youth and community engagement program coordinator at Hebrew SeniorLife, a Boston-based elder services nonprofit. Isaac’s speaking and writing on aging and long-term care include award-winning undergraduate research, a Substack, co-authored health policy articles, and conference presentations.

    ORCID: https://orcid.org/0009-0009-8481-571X

  • James Longoria, MD

    James Longoria, MD

    Clinical Associate Professor, Cardiothoracic Surgery

    BioDr. Longoria is a board-certified, fellowship-trained cardiothoracic surgeon. He is a clinical associate professor in the Department of Cardiothoracic Surgery at Stanford University School of Medicine.

    Deeply accomplished in all facets of complex adult cardiothoracic procedures, Dr. Longoria is a high-volume surgeon with more than 20 years of experience and an exceptionally low mortality and complication rate.

    Dr. Longoria’s surgical experience includes complex mitral valve and tricuspid valve repair, coronary artery bypass grafting, adult congenital repair, as well as procedures for high risk VAD patients. He performs cardiac transplantation, carotid endarterectomy, and implantation of all FDA-approved mechanical circulatory support devices. Additionally, he performs catheter-based valvular procedures (such as transcatheter aortic valve replacement, or TAVR) and open and video-assisted thoracoscopic surgery (VATS) for pulmonary surgical procedures.

    He has an applied interest in atrial fibrillation (AFib) and is a nationally recognized expert in the minimally invasive surgical treatment of Atrial Fibrillation (AFib). Dr. Longoria was issued a method patent from the U.S. Patent and Trademark Office for developing the TTMaze (Totally Thoracoscopic) procedure that is central to the Dual Epicardial Endocardial Persistent (DEEP) AFib clinical trial.

    Before joining Stanford, Dr. Longoria was the surgical director of cardiac ablation at a prominent AFib center certified by the Society of Chest Pain Centers. He holds patents for a synthetic chord used to connect tissue and for specialized methods he developed to treat cardiac arrhythmias.

    At Stanford, Dr. Longoria brings a commitment to patientcentric, personalized care. He is committed to making the experience of surgery as pleasant as possible for his patients. He is also excited for the opportunity to conduct translational research that utilizes the most advanced technology available, in collaboration with colleagues from other disciplines.

    For his outcomes and high patient satisfaction ratings, Dr. Longoria has earned awards and recognition, including being named a Top Doctor of Sacramento by his peers for the last five years in a row. He has also been an honoree of the President’s Award for patient satisfaction by the Sutter Independent Physicians.

    Dr. Longoria has published articles on genetic variants associated with atrial fibrillation, thoracoscopic left atrial appendage clipping, radiofrequency ablation, and other topics. His work has appeared in the Journal of Thoracic and Cardiovascular Surgery, Annals of Thoracic Surgery, Journal of the American College of Cardiology, Journal of Cardiovascular Electrophysiology, and elsewhere.

    He has made numerous presentations on atrial fibrillation surgery and other topics at conferences including the Annual Meeting of the American Association of Thoracic Surgery, Society of Thoracic Surgeons, and International Society for Heart and Lung Transplantation.

    Dr. Longoria is a Fellow of the American College of Surgeons and American College of Cardiology. He is a member of the Society of Thoracic Surgeons, Western Thoracic Surgical Association, the International Society for Minimally Invasive Cardiothoracic Surgery, and the Heart Rhythm Society.

  • Billy W Loo Jr, MD PhD FASTRO FACR

    Billy W Loo Jr, MD PhD FASTRO FACR

    Professor of Radiation Oncology (Radiation Therapy)

    Current Research and Scholarly InterestsMy clinical specialty is precision targeted radiotherapy of thoracic cancers.

    My research is on developing next-generation ultra-rapid radiotherapy technology (PHASER) and studying the radiobiological effects of FLASH treatment.

    My clinical research is on advanced 4-D image-guided radiotherapy and stereotactic ablative radiotherapy (SABR), and functional and metabolic imaging and imaging biomarkers.