Stanford University


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  • Shayan Mohajer Hamidi

    Shayan Mohajer Hamidi

    Postdoctoral Scholar, Electrical Engineering

    Current Research and Scholarly InterestsReasoning in large language models (LLMs) and improving their systematic generalization

    Post-training and fine-tuning methods for alignment, reliability, and efficiency

    Autonomous agent architectures built on top of foundation models

    Generative modeling with diffusion models and their multimodal applications

    Theory and optimization methods for modern deep learning systems

  • Islam Mohamed Nour Hassan Mohamed

    Islam Mohamed Nour Hassan Mohamed

    Postdoctoral Scholar, Pediatric Surgery

    BioDr. Islam Nour is a molecular virologist with over fifteen years of research experience spanning viral genomics, reverse genetics, and structural–functional analysis of pathogenic RNA viruses. As a previous postdoctoral fellow in Molecular Virology at USDA-ARS, he designed and deployed reverse-genetics systems for IBDV and avian reovirus, integrated Illumina and Oxford Nanopore sequencing with comparative genomics, and coupled these approaches to IHC/IF-based pathogenesis models. His earlier work on rotavirus and SARS-CoV spike evolution, protein modelling, and molecular viral surveillance further strengthened his ability to connect viral sequence variation to phenotypic outcomes and tissue injury. He is particularly motivated to bring this mechanistic and translational expertise to multidisciplinary clinical teams in pediatric liver disease and transplantation in division of pediatric surgery in Stanford Medicine, contributing rigorous viral pathogenesis, vector design, and protein expression skills to clinically relevant models and biomarker discovery.

  • Maha Abdalla Mohamed, MD, FACP, FAST

    Maha Abdalla Mohamed, MD, FACP, FAST

    Clinical Associate Professor, Medicine - Nephrology

    BioDr. Mohamed is a board-certified, fellowship-trained nephrologist with the Kidney and Pancreas Transplant Program at Stanford Healthcare. She is a clinical associate professor in the Department of Medicine, Division of Nephrology.

    Dr. Mohamed specializes in kidney and pancreas transplant outcomes and kidney transplant health equity. Conditions she treats include allografts rejection, recipient BK virus and CMV infection, and post-transplant lymphoproliferative disorder management. Dr. Mohamed is known for her personalized and comprehensive approach to patient care. She takes the time to understand her patients’ unique health needs and creates tailored care plans that fit their lifestyles.

    Dr. Mohamed’s research interests include examining new approaches to improving kidney transplant long-term outcome including kidney transplant rejection and infection. She also seeks to develop better screening and monitoring guidance to help reduce post-transplant BK virus and CMV infection.

    Dr. Mohamed’s published work can be found in peer-reviewed journals such as Clinical Transplantation, Transplant Infectious Disease and Transplantation. She has presented to her peers at international, national, and regional meetings, including at the American Transplant Congress and the American Society of Nephrology. She has also been invited to speak multiple times at King Faisal Hospital in Rwanda as well as in Kingdom of Saudi Arabia on topics like post-transplant lymphoproliferative disorder, update in kidney transplant rejection, and update in living-donor kidney transplantation.

    Dr. Mohamed is a faculty fellow of Stanford Center for Innovation in Global Health, fellow of the American Society of Transplantation, a board of managers member of the AST Transplant Nephrology Fellowship Training Accreditation Program, member of the International Society of Nephrology and the American Society of Nephrology.

  • Ashu Mohammad

    Ashu Mohammad

    Postdoctoral Scholar, Urology

    BioRecieved his PhD in molecular biology from Shoolini University, India. He is trying to understand the implications of oxidative stress and circadian rhythms in IC/BPS and Nocturia repectively.