Stanford University
Showing 2,341-2,360 of 2,438 Results
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Hsi-Yang Wu
Member, Maternal & Child Health Research Institute (MCHRI)
Current Research and Scholarly InterestsI am interested in how the brain matures to control the bladder and external sphincter to achieve urinary continence. Using functional MRI of the brain, we are investigating if certain patterns of activity will predict which children will respond to therapy for incontinence.
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Jiajun Wu
Assistant Professor of Computer Science and, by courtesy, of Psychology
BioJiajun Wu is an Assistant Professor of Computer Science and, by courtesy, of Psychology at Stanford University, working on computer vision, machine learning, robotics, and computational cognitive science. Before joining Stanford, he was a Visiting Faculty Researcher at Google Research. He received his PhD in Electrical Engineering and Computer Science from the Massachusetts Institute of Technology. Wu's research has been recognized through the Young Investigator Programs (YIP) by ONR and by AFOSR, the NSF CAREER award, the Okawa research grant, the AI's 10 to Watch by IEEE Intelligent Systems, paper awards and finalists at ICCV, CVPR, SIGGRAPH Asia, ICRA, CoRL, and IROS, dissertation awards from ACM, AAAI, and MIT, the 2020 Samsung AI Researcher of the Year, and faculty research awards from Google, J.P. Morgan, Samsung, Amazon, and Meta.
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Joseph C. Wu, MD, PhD
Director, Stanford Cardiovascular Institute, Simon H. Stertzer, MD, Professor and Professor of Radiology
Current Research and Scholarly InterestsDrug discovery, drug screening, and disease modeling using iPSC.
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Joy Wu
Gerald M. Reaven, MD Professor of Endocrinology
Current Research and Scholarly InterestsMy laboratory focuses on the pathways that regulate the differentiation of mesenchymal stem cells into the osteoblast and adipocyte lineages. We are also studying the role of osteoblasts in the hematopoietic and cancer niches in the bone marrow microenvironment.
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Sean M. Wu
Professor of Medicine (Cardiovascular Medicine) and, by courtesy, of Pediatrics
Current Research and Scholarly InterestsMy lab seeks to identify mechanisms regulating cardiac lineage commitment during embryonic development and the biology of cardiac progenitor cells in development and disease. We believe that by understanding the transcriptional and epigenetic basis of cardiomyocyte growth and differentiation, we can identify the most effective ways to repair diseased adult hearts. We employ mouse and human embryonic and induced pluripotent stem cells as well as rodents as our in vivo models for investigation.
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Courtney Wusthoff, MD
Member, Maternal & Child Health Research Institute (MCHRI)
Current Research and Scholarly InterestsMy projects focus on clinical research in newborns with, or at risk, for brain injury. I use EEG in at-risk neonates to better understand the underlying pathophysiology of risk factors that may lead to worse outcomes. I am particularly interested in neonatal seizures and how they may exacerbate perinatal brain injury with a goal to identify treatments that might protect the vulnerable brain. I am also interested in EEG in other pediatric populations, as well as medical ethics and global health.
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Joanna Wysocka
Lorry Lokey Professor and Professor of Developmental Biology
Current Research and Scholarly InterestsThe precise and robust regulation of gene expression is a cornerstone for complex biological life. Research in our laboratory is focused on understanding how regulatory information encoded by the genome is integrated with the transcriptional machinery and chromatin context to allow for emergence of form and function during human embryogenesis and evolution, and how perturbations in this process lead to disease.
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Tony Wyss-Coray, PhD
D. H. Chen Professor II
Current Research and Scholarly InterestsUse of genetic and molecular tools to dissect immune and inflammatory pathways in Alzheimer's and neurodegeneration.
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Yan Xia
Associate Professor of Chemistry
Current Research and Scholarly InterestsPolymer Chemistry, Microporous Polymer Membranes, Responsive Polymers, Degradable Polymers, Polymers with Unique Mechanical Behaviors, Polymer Networks, Organic Electronic Materials
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Haopeng Xiao
Assistant Professor of Biochemistry
BioUnderstanding mechanisms of metabolic regulation in physiology and disease forms the basis for developing therapies to treat diseases in which metabolism is perturbed. We devise novel mass spectrometry (MS)-based proteomics technologies, combined with data science, to systematically discover mechanisms of metabolic regulation over protein function. Our strategies established the first tissue-specific landscape of protein cysteine redox regulation during aging, elucidating mechanisms of redox signaling in physiology that remained elusive for decades. We also leverage the genetic diversity of outbred populations to systematically annotate protein function and protein-metabolite co-regulation. The aim of our research program is to develop next-generation MS-based strategies to understand mechanisms of metabolic regulation in aging, metabolic disease, and cancer, and to use this knowledge as a basis to develop translational therapeutics.
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Lei Xing
Jacob Haimson and Sarah S. Donaldson Professor and Professor, by courtesy, of Electrical Engineering
Current Research and Scholarly Interestsartificial intelligence in medicine, medical imaging, Image-guided intervention, molecular imaging, biology guided radiation therapy (BGRT), treatment plan optimization
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Grace Xiong, MD
Assistant Professor of Orthopaedic Surgery
BioDr. Grace Xiong is an Assistant Professor and the Patient Safety Director for the Department of Orthopaedic Surgery at Stanford Health Care. She completed her undergraduate education at Harvard College and her medical education at Stanford University. She completed residency in orthopaedic surgery (Harvard Medical School) where she was a chief resident and trained under orthopaedic leaders at Massachusetts General Hospital, Brigham and Women’s Hospital, Beth Israel Deaconess Hospital, and Boston Children’s Hospital. This was followed by a fellowship in spinal surgery at the Rothman Orthopaedic Institute and Jefferson University under the tutelage of world-renowned mentors including Drs. Alexander Vaccaro, Alan Hilibrand, and Christopher Kepler.
Dr. Xiong’s expertise spans the full spectrum of spinal disorders. This includes degenerative cervical, thoracic, and lumbar conditions, particularly spinal disc herniations, spinal stenosis, spinal cysts, spondylolisthesis, and spondylosis causing radiculopathy, myelopathy, claudication, and sciatica. She specializes in both minimally invasive and complex reconstructive and revision spinal surgery. She is particularly interested in the use of motion-preserving approaches to restore function, accelerate recovery, and decrease the need for future spinal surgery for patients. She was awarded the William H. Thomas award for excellence and collegiality in patient care. Patients choose Dr. Xiong for her thoughtful approach in diagnosis and careful use of surgery only when necessary.
Nationally, Dr. Xiong serves as the Associate Editor for leading medical journals in spine care including Spine and Spine Open. She also serves as the Chair of the Resident and Fellow Education Committee for the North American Spine Society and is a member of the Adult Spine Evaluation Committee for the American Academy of Orthopaedic Surgeons.
Dr. Xiong’s main research interests stem from her careful observations of clinical gaps facing patients with spinal issues. She has over 50 peer-reviewed medical publications. Her research focuses on improving the diagnosis and treatment of patients with chronic spinal cord injury, improving clinical outcomes in spinal surgery, and improving health access and equity to spinal care. She is a member of the AO Knowledge Forum, an international research consortium of spine surgeons aimed at improving care for patients with spinal trauma or spinal infections. She is also a member of the North American Spine Society, the American Academy of Orthopaedic Surgeons, the Cervical Spine Research Society, and is an Emerging Leader of the American Orthopaedic Association. -
Sheng Xu
Professor of Anesthesiology, Perioperative & Pain Medicine (Department Research) and, by courtesy, of Electrical Engineering
BioDr. Sheng Xu is a tenured professor and the inaugural Director of Emerging Technologies in the Department of Anesthesiology, Perioperative and Pain Medicine at Stanford University, with a courtesy appointment in Electrical Engineering. He earned his B.S. degree in Chemistry from Peking University and his Ph.D. in Materials Science and Engineering from the Georgia Institute of Technology. Subsequently, he pursued postdoctoral studies at the Materials Research Laboratory at the University of Illinois at Urbana-Champaign. He then spent 10 years on the faculty at UC San Diego before joining Stanford in 2025. His research group is interested in developing new materials and fabrication methods for soft electronics. His research has been presented to the United States Congress as a testimony to the importance and impact of NIH funding.