Stanford University


Showing 5,201-5,300 of 13,005 Results

  • Stephanie Jordan

    Stephanie Jordan

    Postdoctoral Scholar, Emergency Medicine

    BioStephanie's research focuses on social and environmental determinants of health, U.S. public health policy, health services implementation science, and global health. Her research employs primarily quantitative methods. She received her PhD in Public Policy and Sociology from Duke University, where her dissertation analyzed the population health impacts of U.S. state public service expenditures on social, environmental, and healthcare services.

  • Thulasee Jose

    Thulasee Jose

    Fellow in Medicine - Med/Hematology

    BioFellow - Hematology & Medical Oncology ( Pathway Research Track)

  • Chaitanya K. Joshi

    Chaitanya K. Joshi

    Postdoctoral Scholar, Biochemistry

    BioI'm a Stanford Data Science Fellow and postdoc with Rhiju Das at the Department of Biochemistry. I build lab-in-the-loop AI for RNA biology, pairing deep learning with wet-lab experiments at scale.

    I did my PhD in Computer Science at the University of Cambridge with Pietro Liò, on geometric deep learning for molecular design. I built gRNAde, the first 3D generative model for RNA, and validated it in the wet lab as a visiting researcher in Phil Holliger's group at the MRC LMB. I've also interned at Prescient Design (Genentech) and FAIR Chemistry (Meta AI), and my work has been recognized by the Qualcomm Innovation Fellowship and the A*STAR National Science Scholarship.

  • Neha Shirish Joshi, MD MS

    Neha Shirish Joshi, MD MS

    Instructor, Pediatrics

    BioNeha S Joshi, MD MS is an Instructor in the Division of Pediatric Hospital Medicine at Stanford University. Her clinical responsibilities include caring for hospitalized children at Lucile Packard Children’s Hospital Stanford as a board certified Pediatric Hospitalist, and neonatal resuscitation and the care of level I/II late preterm and term newborns as a Neonatal Hospitalist. Dr. Joshi completed her MD with Distinction at the University of California San Francisco, followed by both residency in Pediatrics and fellowship in Pediatric Hospital Medicine at Stanford University. Dr. Joshi additionally completed a Masters in Clinical Research and Epidemiology at Stanford University. Her research program seeks to identify and implement high value care practices for late preterm and term infants during the birth hospitalization. Dr. Joshi's prior work has included the development of a clinical examination-based approach to identifying late preterm and term infants at risk for early onset sepsis; this work won the Jennifer Daru Memorial Award for manuscript with most potential to impact clinical care. Her current focus is the development of clinical benchmarks and quality markers for the care of late preterm infants during the birth hospitalization. Dr Joshi is presently supported by a NIH K23 Career Development Award, the Stanford Maternal and Child Health Research Institute, and the Society for Pediatric Research.

  • Shashank V. Joshi, MD

    Shashank V. Joshi, MD

    Senior Associate Vice Provost for Academic Wellbeing, Professor (Teaching) of Psychiatry and Behavioral Sciences (Child and Adolescent Psychiatry and Child Development) and, by courtesy of Pediatrics and, of Education

    Current Research and Scholarly InterestsDr. Joshi's teaching and research focuses on increasing knowledge and effectiveness of school mental health, youth wellbeing, positive psychology, pediatric psychotherapy and medication interventions. Areas of study include: the therapeutic alliance in medical care, structured psychotherapy interventions, cultural issues in pediatrics, wellbeing promotion and suicide prevention in schools settings, and faculty development in graduate medical education.

  • Siddhartha Joshi, PhD

    Siddhartha Joshi, PhD

    Sr Res Scientist-Basic Life, Neurosurgery

    BioI am a neuroscientist with over 20 years of experience in empirical, hypothesis-driven research. My knowledge and expertise cover a wide range of topics and methods within systems neuroscience including sensory perception, neurophysiology and neuroanatomy, eye-movements and pupillometry. My research is focused on how the brain represents and uses sensory information to drive goal-directed behaviors and in exploring how intrinsic neuromodulatory systems influence the neural circuits that drive such behaviors. At Stanford, I am looking to channel my experience towards studying human neural signals that underlie computations governing pain and attention.

    My work thus far [1-4] supports the idea that there is a need for simultaneous measurements of behavior, brain state and large-scale cortical activity to understand how the brain’s circuits: (i) are modulated by ascending sympathetic activation and (ii) provide top-down control of descending sympathetic control. These are technically challenging experiments [3,4] that have thus far largely been explored in animal models. My current goal is to leverage opportunities to directly measure human brain activity via electrodes implanted for monitoring epilepsy. Towards this end, I will use state-of-the-art neurophysiological, behavioral, pupillometric techniques combined with quantitative analyses.

    Representative publications:

    1. Joshi S, Gold JI (2020) Pupil Size as a Window on Neural Substrates of Cognition. Trends in Cognitive Sciences 24(6), 466-480. PMCID: PMC7271902.

    2. Joshi S (2024). Control of Pupil Responses. Encyclopedia of the Human Brain (Elsevier), Second Edition, Vol.1, 374-387.

    3. Joshi S, Li, Y, Kalwani R, Gold JI (2016). Relationships between pupil diameter and neuronal activity in the locus coeruleus, colliculi and cingulate cortex. Neuron 89:221-234. PMCID: PMC4707070.

    4. Joshi S, Gold JI (2022) Context-Dependent Relationships between Locus Coeruleus Firing Patterns and Coordinated Neural Activity in the Anterior Cingulate Cortex. eLife 11:e63490. PMCID: PMC8765756.

  • Anjali Jotwani, MD, MS

    Anjali Jotwani, MD, MS

    Fellow in Obstetrics & Gynecology - Reproductive Endocrinology and Infertility (REI)

    BioDr. Anjali Jotwani is an obstetrician and gynecologist at Stanford Health Care and a clinical assistant professor in the Department of Obstetrics & Gynecology, Division of Gynecology & Gynecologic Specialties at Stanford University School of Medicine.

    Dr. Jotwani offers comprehensive obstetric and gynecologic care for patients at every stage of life, from adolescence to menopause. She specializes in obstetric care, preventive care, the perimenopause transition and menopause, and sexual health. Dr. Jotwani’s approach is rooted in trauma‑informed care and reproductive justice. She is committed to prioritizing patient perspectives, safety, and equity.

    Dr. Jotwani’s research spans many areas, from the use of genetic testing during pregnancy, to factors that contribute to gynecologic cancers. Her research interests include obstetric trauma, postpartum wellness, and medical student and resident education. Dr. Jotwani has published her work in many peer-reviewed journals, including Fertility and Sterility, JAMA Oncology, and Cell. She has also delivered presentations at national conferences, including the annual meeting of the American Society for Reproductive Medicine.

    Dr. Jotwani is a junior fellow of the American College of Obstetricians and Gynecologists and a member of the North American Menopause Society.

  • Israel Juarez Contreras

    Israel Juarez Contreras

    Postdoctoral Scholar, Biochemistry

    Current Research and Scholarly InterestsSterols are the most abundant lipid in the plasma membrane. Their structure is deeply conserved, built though a long iterative evolutionary process whose end products are the topology of the fused steroid ring system and the structure of the aliphatic tail extending from it. Together these let the molecule pack tightly against the acyl chains of neighboring lipids, which is how sterols reinforce the membrane and set its fluidity. This same interaction produces a second effect. Sterols associate preferentially with saturated lipids, particularly sphingolipids, and that preference sorts the bilayer into ordered domains, often called lipid rafts, which concentrate certain proteins and exclude others.

    The Bloch hypothesis holds that the sterol biosynthetic pathway was progressively selected for membrane function, with each step yielding a molecule better suited to the bilayer than the one before it. Fluidity has historically been taken as the property under selection, but it is not the only one. Rebuilding ergosterol biosynthesis stepwise in living yeast showed that domain formation imposes its own demands, and that the two properties are not optimized by the same modifications. The pathway alternates between them, arriving at structures that regulate fluidity and organization together rather than either alone. A further design principle follows from this. The pairing between a sterol and the acyl chain length of its partner sphingolipid is highly specific. Replacing the native pathway in yeast with cholesterol biosynthesis abolished the domains ergosterol supports, since ergosterol pairs with the very long acyl chains of fungal sphingolipids while cholesterol pairs with the shorter chains of mammalian membranes.

    These principles, observed in fungi, carry direct consequences for mammals, where cholesterol occupies two distinct pools. One is structural, held in complex with sphingolipids and other lipids. The other is a residual fraction, free or accessible that carries out essential roles in signaling and homeostasis. Accessible cholesterol is defined operationally, by what a probe can bind, but what it corresponds to physiochemically remains open. My central goal is to define accessible cholesterol through a more rigorous biophysical lens and connect that definition to the machinery in cells.

  • Maria Juarez-Reyes

    Maria Juarez-Reyes

    Clinical Associate Professor, Medicine - Primary Care and Population Health

    BioDr. Juarez-Reyes received her PhD in Health Psychology, MD and Internal Medicine residency training from the University of California at San Francisco. Her focus during medical training was in Behavioral Medicine. In 2010, she became board certified in Integrative Medicine through American Board of Integrative Holistic Medicine. She is currently a Clinical
    Associate Professor in the Division of Primary Care and Population Health, Department of Medicine, Stanford University. She is currently the Director of Behavioral Health Group Medical Visits and serves as Site Director for Internal Medicine Residency program at Stanford. She developed “Beyond Stress”, a six-week group intervention for patients with stress, anxiety, and depression. This intervention has now been translated into Spanish, Mas Alla del Estres, and it is delivered to community based Spanish speaking cancer patients.
    Her current research evaluates integrative behavioral health group medical visits and the relationship to anxiety, depression, burnout, and sleep in primary care and Spanish speaking community-based populations. Previous health disparities research includes tobacco cessation practices of community-based providers, breast cancer screening follow-up in Latinx women, Latinx adolescent reproductive behavior, medication eligibility criteria effects in ethnic subgroups, and TB treatment in urban county jails. She enjoys travel, walking with friends, anything science fiction and spending time with her family.

  • Maximilian Julve

    Maximilian Julve

    Clinical Assistant Professor, Medicine - Oncology

    BioDr. Max Julve is a medical oncologist and Clinical Assistant Professor of Medicine (Oncology) at Stanford University School of Medicine, with a clinical and research focus in solid tumor cellular therapy and melanoma.

    Dr. Julve completed his medical training at Barts and The Royal London School of Medicine in the United Kingdom, followed by internal medicine training at teaching hospitals across North and Central London. He was subsequently awarded a National Institute for Health and Care Research (NIHR) Academic Clinical Fellowship in Medical Oncology at Imperial College London. During this time, alongside his clinical training, he conducted translational research within the King’s College London Immunoengineering group, focusing on transcriptional optimization of CAR-T cell therapies.

    Dr. Julve later completed advanced clinical fellowships in solid tumor cellular therapy and melanoma at The Royal Marsden Hospital, London, and earned an MD(Res) doctorate investigating the role of immunosuppressive granulocytes in patients receiving immunotherapy.

    He is a clinical investigator specializing in melanoma, immuno-oncology, and solid tumor cellular therapy, with a particular emphasis on translating mechanistic insights from the laboratory into novel therapeutic strategies for patients.

  • Irene Jun

    Irene Jun

    Clinical Assistant Professor, Pediatrics - Neonatology

    BioIrene Jun, MD, is a Clinical Assistant Professor of Pediatrics in the Division of Neonatal and Developmental Medicine at Stanford University School of Medicine and a neonatal hospitalist at Lucile Packard Children’s Hospital Stanford. Her academic work focuses on newborn care, neonatal resuscitation, and medical education.

    Dr. Jun serves as Associate Rotation Director for the Packard Intermediate Care Nursery, a core Stanford pediatric residency rotation that she has helped lead since 2012. She has developed an extensive curriculum of bedside, simulation-based, digital, and point-of-care educational resources to support pediatric trainees in newborn medicine.

    Her scholarly interests include delivery room education, neonatal resuscitation, simulation, and innovative approaches to point-of-care learning.

  • Patrick Jurney

    Patrick Jurney

    Visiting Scholar, Chemical and Systems Biology Operations

    BioPatrick Jurney is the Kordestani Endowed Chair and an Associate Professor of Biomedical Engineering at San Jose State University. A Fellow of the American Heart Association (FAHA), his research focuses on the intersection of fluid dynamics and cellular mechanics, with a particular emphasis on cardiovascular health and disease..

    Dr. Jurney completed his Ph.D. in Thermal Fluid Systems at the University of Texas at Austin, where he designed and built microphysiological systems to investigate the role of nanoparticle properties in targeted drug delivery. Following his doctoral studies, he was a T-32 Fellow in Translational Engineering at Oregon Health & Science University (OHSU). During his fellowship, he worked with cardiovascular biomaterials and characterized how biomaterial properties influence endothelialization and thrombogenesis.

    Currently, his research laboratory at SJSU investigates the role of fluid shear stress mechanotransduction on endothelial metabolic structure and function. Dr. Jurney is a pioneer in using holotomographic microscopy to study sub-cellular organelles in cardiovascular disease. He is also collaborating in the laboratory of Dr. Daria Mochly-Rosen to characterize the role of mitochondrial structure and dynamics in metabolic function in response to ischemia/reperfusion and other models of cardiovascular health and disease.

    Website: https://www.jurneylab.org/
    Email: patrick.jurney@sjsu.edu or pjurney@stanford.edu

  • Prerak Juthani

    Prerak Juthani

    Clinical Assistant Professor, Medicine

    BioPrerak Juthani is a Bay Area native and completed his undergraduate studies at UC Berkeley, where he graduated summa cum laude and double-majored in Molecular Biology and Public Health. He then went on to Yale where he was able to bridge his love of medicine and entrepreneurship by completing the joint MD-MBA program. Afterward, he was lucky enough to come back home to complete his Internal Medicine residency at Stanford.

    He is fascinated by medicine and how all the organ systems come together to create the human experience. He conducts research related to clinical outcomes in patients with Diabetic Foot Infections and also participates in various quality improvement initiatives in the hospital. Specifically, he is the co-founder of "The Kindness Coalition," which works to foster kindness among healthcare workers in order to create a more inclusive and collaborative healthcare environment.

    Outside of the hospital, Prerak has a Youtube channel where he creates videos to increase transparency of what it’s like to be a medical student and resident; he also has a podcast called Red, White & Brown, which provides an insight into the novel immigrant experiences of first-generation South Asian immigrants. He is an active runner/marathoner, avid reader, and proud dog dad. 

  • Nicholas Hedemann Juul

    Nicholas Hedemann Juul

    Instructor, Medicine - Pulmonary, Allergy & Critical Care Medicine

    Current Research and Scholarly InterestsMolecular and cellular biology of the distal lung
    High altitude medicine

  • Neda Kaboodvand

    Neda Kaboodvand

    Basic Life Res Scientist, Neurosurgery

    Current Role at StanfordNeda Kaboodvand, PhD, is an Applied Research Scientist at Stanford University School of Medicine. Her research lies at the intersection of artificial intelligence, behavioral science, and clinical research, with a focus on using multimodal data to understand human behavior and improve clinical decision-making. She designs and leads experimental and observational studies and develops machine learning, statistical, and computational models to evaluate interventions, predict outcomes, and support personalized, adaptive approaches to care. A central part of her work involves modeling complex longitudinal and time-series data, including neural, electrophysiological, physiological, behavioral, imaging, and device-generated signals. By integrating these high-dimensional data sources, she develops models of patient and user state, identifies temporal patterns associated with outcomes and intervention response, and translates complex data into actionable insights for clinical and digital health systems.

  • Saraswati Kache

    Saraswati Kache

    Clinical Professor, Pediatrics - Critical Care

    BioDr. Kache is a Clinical Professor of Pediatrics in the Division of Critical Care Medicine whose work spans pediatric transport, device innovation, global health, and sustainability. A recent Stanford Biodesign Faculty Fellow and recognized educator with multiple teaching awards, she is engaged in device development, building on a career devoted to critically ill children through innovation, education, and global collaboration.

    She chairs the Sepsis Steering Committee at LPCH, which she helped launch in 2017 to develop a hospital-specific pathway from international guidelines, identify improvement opportunities, and drive better outcomes through education and evaluation of clinical data. She previously served on the American College of Critical Care Medicine committee that authored the Pediatric Sepsis Guidelines, shaping national and international standards.

    As Medical Director of the Transport Program, she focuses on team education and standardized processes to build a high-functioning pediatric critical care transport team dedicated to safe inter-facility transport of critically ill children. She is also partnering with the American Academy of Pediatrics on a national multidisciplinary pediatric transport curriculum.

    As a Stanford Innovations in Global Health Faculty Fellow, she founded the pediatric residency's Global Health Track to train physicians in equitable, sustainable pediatric care. Internationally, she has helped establish and support PICUs in Nepal, Uganda, and Zimbabwe, introduced CPAP in low-resource settings, and led PICU education and capacity-building to strengthen critical care infrastructure.

    A member of the Maternal Child Health Research Institute, her research integrates guideline development, systems improvement, and global implementation of evidence-based pediatric critical care. She has recently begun examining how healthcare systems affect climate change and how to improve sustainability.

  • Deborah Kado

    Deborah Kado

    Professor of Medicine (Primary Care and Population Health) and, by courtesy, of Epidemiology and Population Health

    BioDr. Kado is a board-certified, fellowship-trained doctor specializing in geriatrics. She serves as co-director of the Stanford Longevity Center. She is a professor of medicine and chief of research for the Geriatrics Section in the Department of Medicine, Division of Primary Care and Population Health. She is also the Director of the Geriatric Research, Education, and Clinical Center (GRECC) at VA Palo Alto Health Care System.

    For each patient, Dr. Kado prepares a personalized care plan. Her objective is to help all individuals maintain the best possible health and quality of life as they age.

    A special interest of Dr. Kado is bone health. She has conducted extensive research focused on osteoporosis and the related disorder hyperkyphosis.
    Since joining the UCLA faculty in 2000, she has received continuous funding for her research from the National Institutes of Health (NIH).

    She has over 100 peer-reviewed publications of her research findings in the Journal of Bone and Mineral Research, Osteoporosis International, Journal of Gerontology and Medical Sciences, Journal of Geriatric Oncology, Nature Communications, and other peer-reviewed journals.

    In 2007, she defined hyperkyphosis as a new geriatric syndrome. Her discoveries in this field were first featured in the American College or Physician’s premier internal medicine journal Annals of Internal Medicine. Later, they also appeared in a dedicated chapter in UpToDate, the electronic resource providing evidence-based clinical decision support for doctors worldwide.

    Prior to coming to Stanford, Dr. Kado practiced at UC San Diego where she started a dedicated osteoporosis clinic for patient care and research. She later broadened her research interests beyond musculoskeletal aging to study other aging-related topics such as the gut microbiome in older men and the effects of cancer treatments on aging in newly diagnosed breast cancer patients.

    Dr. Kado is a California native. She trained at UCSF and UCLA. She also earned a Master of Science degree in epidemiology at the UCLA School of Public Health, sponsored by the John Hartford Foundation.

    She is a member of the American Geriatrics Society, American Society of Bone and Mineral Research, Gerontological Society of America, The Endocrine Society, and other professional organizations. She co-chairs the NIH National Institute on Aging Workshop for the American Society of Bone and Mineral Research. She also participates in the Bone Health Working Group of the Society for Women’s Health Research.

  • Pegah Kahaliardabili (Kahali), MD

    Pegah Kahaliardabili (Kahali), MD

    Clinical Assistant Professor, Adult Neurology

    Current Research and Scholarly InterestsElectrophysiological biomarkers of motor and cognitive control, and precision neuromodulation in movement disorders.

  • David Kahn, M.D.

    David Kahn, M.D.


    Current Research and Scholarly InterestsCosmetic surgery and the study of changes associated with the aging appearance of the face.

    1. Analysis and development of new procedures for aesthetic surgery of the face
    2. Analysis of the changes the face undergoes with age in the bone and soft tissues
    3. Analysis of techniques for rhinoplasty
    4. Evaluation of optimal techniques for aesthetic and reconstructive breast surgery

  • James Kahn

    James Kahn

    Professor of Medicine (General Medical Disciplines), Emeritus

    Current Research and Scholarly InterestsMy initial research activities involved antiretroviral and novel therapeutic treatments of HIV infection, understanding elements of HIV pathogenesis associated with acute HIV infection and post exposure prevention. My most recent scholarly activities concentrate on working as a team to capitalize on the data stored in electronic medical records, HIV disease modeling and using electronic medical records for outcome research and developing a mentorship program for early career scientists.

  • Alexander D. Kaiser

    Alexander D. Kaiser

    Instructor, Cardiothoracic Surgery

    BioAlexander Kaiser, PhD, is an applied mathematician and computational scientist who researches modeling and simulation of heart valves, focused on congenital heart valve disease and its surgical treatment. His recent research explores simulation-guided design of aortic valve repair of complex congenital heart defects. He has developed novel, nearly first-principles modeling methods for heart valves called elasticity-based design. These methods produce robust and realistic flows in fluid-structure interaction simulations. Dr. Kaiser is an Instructor in Cardiothoracic Surgery at Stanford University working with Michael Ma and Alison Marsden. He completed his PhD in Mathematics with Charles Peskin at the Courant Institute of Mathematical Sciences at New York University, where he was awarded the Kurt O. Friedrichs Prize for Outstanding Dissertation in Mathematics.

  • Pooja Kakar

    Pooja Kakar

    Member, Maternal & Child Health Research Institute (MCHRI)

    Current Research and Scholarly InterestsAs a breastfeeding medicine physician, I am passionate about advocating for mother-infant dyads and supporting their breastfeeding journeys. Additionally, I am interested studying and addressing disparities in initiation and duration of breastfeeding, particularly in lower-resourced populations, by building and advancing community partnerships.

    I am also interested in the use of digital health tools to advance upstream determinants of health in community-based settings. My current funded research projects include: 1) Providing a telehealth-based, weight control program to children with obesity from lower-income, racial and ethnic minority families (Gardner GOALS) and 2) Assessing and addressing disparities in healthy behaviors in families from under-resourced settings through the use of a secure, multilingual mobile neighborhood app (Our Voice: Beyond Clinic Walls).

  • Sharada Kalanidhi

    Sharada Kalanidhi

    Director of Data Science, Biochemistry - Genome Center

    Current Role at StanfordParaphrasing the mathematician Alexander Grothendieck: the essential thing is to pose problems in the right framework.

    Sharada is developing a new field, Mathematical Medicine, which applies pure mathematical frameworks to genomic and multi-omic data for quantitative, personalized diagnosis. Her work addresses a fundamental challenge in contemporary medicine: prevailing cohort-based diagnostic approaches are not always equipped to capture the biological mechanisms relevant to individual patients, particularly in long-pending, complex “outlier” cases.

    After more than a decade of research and close collaboration with biochemists at the Stanford Genome Technology Center (Dept. of Biochemistry), Sharada concluded that the mathematics currently used for multi-omic diagnosis is not sufficient for the level of biological and clinical complexity being attempted, particularly for individual patients who lack relevant statistical cohorts. Her conclusion echoes the perspective of the mathematician Mikhail Gromov: “This area does not yet exist. It will have to be invented.” This gap has important clinical consequences: individual biological differences may be treated as “noise” or as "outliers" rather than as clinically meaningful information. As a result, many patients with complex or multi-system conditions remain undiagnosed or incorrectly diagnosed, sometimes for decades, delaying effective treatment and, in some cases, allowing disease processes to worsen.

    Mathematical Medicine addresses these limitations by developing an intermediate translational layer between cohort-based statistical models and individualized multi-omic diagnosis and clinical decision-making. The approach reflects the data-first philosophy articulated by the late mathematician Jim Simons: “We don’t start with models. We start with data. We don’t have any preconceived notions.” By developing new mathematical frameworks for interpreting an individual’s genomic and multi-omic data, Mathematical Medicine seeks to seeks to let the data speak for itself while enabling quantitative, individualized diagnosis and clinical decision-making.

    Sharada’s research has led to the diagnosis and identification of appropriate treatment pathways for patients with previously undiagnosed, complex conditions. These rare and atypical cases also reveal biological relationships not apparent in population-level analyses, leading to insights that can inform broader research, clinical applications, and drug development.

    Further information on this field, including opportunities for early philanthropic partnerships, is available at: https://mathmed-2026.web.app

  • Anusha Kalbasi, MD

    Anusha Kalbasi, MD

    Associate Professor of Radiation Oncology (Radiation Therapy)

    BioDr. Kalbasi is a physician-scientist at the Stanford Cancer Institute. In the clinic, Dr. Kalbasi is a radiation oncologist specializing in the treatment of patients with sarcoma and other solid tumors, with expertise in early phase clinical trials related to immunotherapy, cellular therapy, and radiation therapy.

    The Kalbasi laboratory studies cancer immunology, with a focus on understanding—and re-engineering—the molecular conversations that immune cells have with one another and with cancer cells, especially through cytokines. By mapping how these signals are sent, received, and interpreted within immune cells and cancer cells, the lab aims to design next-generation immunotherapies that deliver the right messages at the right time—making cancer-fighting cells more potent, more persistent, and more precise.

  • Agnieszka Kalinowski

    Agnieszka Kalinowski

    Clinical Assistant Professor, Psychiatry and Behavioral Sciences

    BioI am a translational physician-scientist committed to understanding the pathophysiology of schizophrenia to identify disease-modifying therapeutic interventions. I examined the role of C4 protein activation in clinical samples from individuals with schizophrenia compared to controls, its relationship to C4 CNV and effect on blood brain barrier permeability using in vitro model systems. I contributed to identifying LINE-1 insertions in postmortem brain samples of individuals with schizophrenia and C4 copy number variation (CNV) in pediatric patients with neuropsychiatric symptoms. Since accumulating evidence points to the synapses as the locus of pathology in schizophrenia, I am focusing my current research effort to defining the underlying abnormality in synapses in schizophrenia using a combination of in vitro iPS based model systems and postmortem brain samples, and applying cutting-edge techniques like spatial transcriptomics and array tomography.

  • Nathan Kalinowski, D.M.D.

    Nathan Kalinowski, D.M.D.

    Clinical Assistant Professor, Surgery - Plastic & Reconstructive Surgery

    BioDr. Nathan Kalinowski is a Hospital Dentist and Clinical Assistant Professor in Dental Medicine and Surgery. He performs medically necessary dental clearance and extractions for patients preparing for cardiac surgery, radiation therapy, or organ transplantation. He also performs surgical treatment of infection and trauma to the teeth and supporting alveolar bone including reconstruction using dental implants.

  • Mausam Kalita

    Mausam Kalita

    Physical Science Research Professional 2, Rad/Molecular Imaging Program at Stanford

    Current Role at StanfordSenior Research Scientist: a) cold chemical synthesis— Synthesis of the 12C and 19F- HPLC standards and precursors for 11C- and 18F- labeling
    b) Radiosynthesis— Introduction of 11C or 18F radioisotopes into small molecules to develop novel PET tracers, that can track activated myeloid cells in neurodegenerative disease, c) radiometal labeling— 64Cu and 89Zr labeling of monoclonal antibodies that target immune receptors, d) clinical translation— To follow FDA guidelines for translating preclinically validated tracers into humans in the cyclotron and radiochemistry facility (CRF) of the Stanford University

  • Praveen Kalra

    Praveen Kalra

    Clinical Associate Professor, Anesthesiology, Perioperative and Pain Medicine

    BioDr. Praveen Kalra is Board Certified in Anesthesia and in Critical Care. He specializes in trauma, orthopedic, brain and spine surgery, urology, and cancer surgery. He was appointed Fellow of the American Society of Anesthesiology (FASA) in 2023. Appointed Medical Director of Sustainability for Stanford Healthcare in Dec 2023.

    His professional interests include devising protocols for patient safety, informed consent, reducing the impact of anesthetics on the environment, addressing climate change by reducing green house gas emissions in the health care setting, resident education to emphasize evidence based safe care and mentoring medical students. He has been in practice for over 18 years.

    Received the Inaugural Sustainability Ambassador Award in 2022 at SHC for removing Desflurane (anesthetic gas with highest global warming potential) from the OR and undertaking multiple initiatives such as creating a Green Team at SHC, an elective Green Rotation for residents, green curriculum video series and addressing plastic & biohazardous waste in the OR. Current projects are focused on decommissioning nitrous oxide pipelines in the OR. As Medical Director of Sustainability, I work on collaborating with experts, fostering clinician engagement in change management, and spearheading transformative initiatives.

    Dr. Kalra completed his residency in Anesthesia from Harvard Medical School’s Beth Israel Deaconess Hospital and a fellowship in Critical Care from Johns Hopkins Hospital, Baltimore.

  • Julia Kaltschmidt

    Julia Kaltschmidt

    Professor of Neurosurgery

    Current Research and Scholarly InterestsThe lab’s primary research interest is to understand how specific neuronal circuits are established. We use mouse genetics, combinatorial immunochemical labeling and high-resolution laser scanning microscopy to identify, manipulate, and quantitatively analyze synaptic contacts within the complex neuronal milieu of the spinal cord and the enteric nervous system.

  • Neil M. Kalwani, MD, MPP

    Neil M. Kalwani, MD, MPP

    Clinical Instructor, Medicine - Cardiovascular Medicine

    BioDr. Neil M. Kalwani is a board-certified, fellowship-trained cardiologist with Stanford Health Care. He is also a clinical instructor in the Department of Medicine, Division of Cardiovascular Medicine at Stanford University School of Medicine. In addition, he serves as director of preventive cardiology at the Veterans Affairs (VA) Palo Alto Health Care System.

    Dr. Kalwani specializes in general and preventive cardiology care. He has expertise in treating high cholesterol and other risk factors to prevent and stop the progression of coronary artery disease and other forms of atherosclerosis. He provides compassionate care centered around his patients' goals and prioritizes effective therapies based on the latest evidence to improve heart health and overall well-being.

    Dr. Kalwani’s research focuses on innovations in care delivery designed to improve the value of care for people living with cardiovascular disease. He is especially interested in telemedicine and its impact on cardiology care, including on quality of care, practice patterns, and access. He has also investigated clinical decision support for cardiac testing, measurement of patient-reported outcomes for heart disease, and lipoprotein (a) testing patterns.

    Dr. Kalwani has published his research in many peer-reviewed journals, including Circulation, the American Heart Journal, the American Journal of Preventive Cardiology, and the Journal of Telemedicine and Telecare. He has also presented his research at the American College of Cardiology (ACC) and American Heart Association (AHA) Scientific Sessions. His presentations have covered topics ranging from telemedicine’s effect on care delivery to the impact of physician productivity assessment on medical center performance.

    Dr. Kalwani is a member of the ACC, AHA, and American Society of Echocardiography (ASE).

  • Robin Kamal MD MBA

    Robin Kamal MD MBA

    Associate Professor of Orthopaedic Surgery and, by courtesy, of Surgery (Plastic and Reconstructive Surgery)

    Current Research and Scholarly InterestsWrist and Elbow Injuries and Quality Measures in Orthopaedic Surgery

  • Tahereh Kamali

    Tahereh Kamali

    Instructor, Adult Neurology

    Current Research and Scholarly InterestsAI for Healthcare, Neuroimaging, Biomarkers Development

  • Aya Kamaya, MD

    Aya Kamaya, MD

    Professor of Radiology (Body Imaging)

    Current Research and Scholarly InterestsHepatobiliary imaging
    Hepatocellular carcinoma
    Urologic imaging
    Gynecologic imaging
    Thyroid imaging
    Novel ultrasound technologies
    Perfusion CT imaging of abdominal tumors

  • Neeraja Kambham

    Neeraja Kambham

    Professor of Pathology

    Current Research and Scholarly InterestsDr. Kambham's research interests primarily involve medical diseases and transplantation pathology of the kidney and liver.