School of Medicine


Showing 101-110 of 174 Results

  • Stephen B. Montgomery

    Stephen B. Montgomery

    Associate Professor of Pathology, of Genetics, of Biomedical Data Science and, by courtesy, of Computer Science

    Current Research and Scholarly InterestsWe focus on understanding the effects of genome variation on cellular phenotypes and cellular modeling of disease through genomic approaches such as next generation RNA sequencing in combination with developing and utilizing state-of-the-art bioinformatics and statistical genetics approaches. See our website at http://montgomerylab.stanford.edu/

  • Thomas Montine, MD, PhD

    Thomas Montine, MD, PhD

    Stanford Medicine Professor of Pathology

    BioDr. Montine received his education at Columbia University (BA in Chemistry), the University of Rochester (PhD in Pharmacology), and McGill University (MD and CM). His postgraduate medical training was at Duke University, and he was junior faculty at Vanderbilt University where he was awarded the Thorne Professorship in Pathology. In 2002, Dr. Montine was appointed as the Alvord Endowed Professor in Neuropathology and Director of the Division of Neuropathology at the University of Washington. He was Director of the University of Washington Alzheimer’s Disease Research Center, one of the original 10 Centers in the US, and passed that responsibility to able colleagues. Dr. Montine was the founding Director of the Pacific Udall Center, a NINDS-funded Morris K. Udall Centers of Excellence for Parkinson’s Disease Research. In 2010, Dr. Montine was appointed Chair of the Department of Pathology at the University of Washington. In 2016, Dr. Montine was appointed Chair of the Department of Pathology at Stanford University where he is the Stanford Medicine Endowed Professor in Pathology.

    The focus of the Montine Laboratory is on the structural and molecular bases of cognitive impairment. The Montine Laboratory addresses this prevalent, unmet medical need through a combination of neuropathology, biomarkers for detection and progression of early disease, and experimental studies that test hypotheses concerning specific mechanisms of neuron injury and then develop novel approaches to neuroprotection. Our current approaches include small molecule precision therapeutics and cell replacement strategies for brain.

  • Saisindhu Narala, MD, MAS

    Saisindhu Narala, MD, MAS

    Clinical Assistant Professor, Dermatology
    Clinical Assistant Professor, Pathology

    BioDr. Narala completed her dermatology residency at the University of Texas at Houston and MD Anderson Cancer Center. She then completed a fellowship in dermatopathology at Stanford. Her clinical interests include general medical dermatology, dermatology in skin of color, and pigmentary disorders. She also has an interest in medical education.

  • Yasodha Natkunam, M.D., Ph.D

    Yasodha Natkunam, M.D., Ph.D

    Ronald F. Dorfman, MBBch, FRCPath Professor of Hematopathology

    Current Research and Scholarly InterestsMy research interests focus on the identification and characterization of markers of diagnostic and prognostic importance in hematolymphoid neoplasia.

  • Jeff Nirschl

    Jeff Nirschl

    Instructor, Pathology

    BioJeff Nirschl, M.D., Ph.D. is a neuropathology fellow at Stanford University, Stanford, CA, in the Department of Pathology. He completed his Ph.D. in Neuroscience at the University of Pennsylvania under the supervision of Dr. Erika Holzbaur. During his thesis research, he investigated axonal transport and genetic forms of parkinsonism. He also developed computational image analysis workflows for fluorescence microscopy and digital pathology. His research interests include molecular motors and the neuronal cytoskeleton, the regulation of axonal transport in neurodegeneration, digital pathology, and quantitative image analysis using machine learning.
    https://orcid.org/0000-0001-6857-341X

  • Roberto Novoa, MD

    Roberto Novoa, MD

    Clinical Associate Professor, Pathology
    Clinical Associate Professor, Dermatology

    Current Research and Scholarly InterestsMy research interests include the medical applications of artificial intelligence, cutaneous lymphoma, and the side effects of targeted therapies. I have served as the lead dermatologist in our ongoing effort to develop AI-augmented classification of skin lesions. We are in the process of establishing one of the first prospective studies examining the performance of a deep learning algorithm in real-world patients.

  • Jean Oak

    Jean Oak

    Clinical Assistant Professor, Pathology

    Current Research and Scholarly InterestsDr. Oak received her MD and PhD from University of California, Irvine, and completed her anatomic pathology and clinical pathology residency, hematopathology fellowship, and transfusion medicine fellowship at Stanford University. Her research and clinical interests include clinical assay development for tumor immunophenotyping, lymphocyte subset monitoring, and immunotherapy target antigen assessment in a variety of hematologic and immunologic disorders. As director of a clinical flow cytometry laboratory, she oversees the design, validation, and implementation of various immunophenotyping assays in addition to ensuring quality assurance and regulatory compliance for CLIA certification.

  • Michael G. Ozawa

    Michael G. Ozawa

    Clinical Assistant Professor, Pathology

    BioDr. Ozawa is a Clinical Assistant Professor of Pathology with subspecialty focus in Cytopathology, Head and Neck pathology, and Thoracic pathology. He completed his M.D., Ph.D. training at the McGovern Medical School and the M. D. Anderson Cancer Center in Houston, TX. He then completed residency training in Anatomic and Clinical Pathology followed by fellowship training in Surgical Pathology and Cytopathology at Stanford University. He is board certified in Anatomic and Clinical Pathology as well as Cytopathology. His interests include pulmonary neoplasms as well as neoplasms of the Head and Neck. He also has developed collaborative research interests in utilizing fine needle aspiration (FNA) techniques in the growing clinical application of Chimeric Antigen T Cell (CAR-T) therapy.