School of Medicine
Showing 321-338 of 338 Results
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Adela Wu
Clinical Assistant Professor, Neurosurgery
Current Research and Scholarly InterestsDr. Wu's current research aims include integrating palliative care practices and communication training in surgical subspecialties and surgical education, investigating quality-of-life metrics and patient outcomes, and identifying and mitigating disparities in treatment patterns for surgical pathologies and utilization of palliative care resources.
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Caren Yu-Ju Wu
Postdoctoral Scholar, Neurosurgery
Current Research and Scholarly InterestsBasic, translational, immunological and clinical research
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Lulu Xing
Affiliate,
BioLulu received her undergraduate degree in Biomedicine from the University of Melbourne in Melbourne, Australia. In December 2016, Lulu was awarded a PhD degree in neuroscience from the Florey Institute of Neuroscience and Mental Health, the University of Melbourne, where she identified a major under-appreciated role for subventricular zone-derived neural precursor cells in the process of myelin regeneration after demyelinating injury. Since late 2016, Lulu worked at Australian Regenerative Medicine Institute, Monash University as a postdoctoral fellow in Dr. Tobias Merson’s group, with a focus on developing mouse models to study the molecular and cellular mechanisms underlying myelination mediated by distinct types of endogenous brain stem cells in health and disease. In particular, Lulu developed a novel mouse model of conditional OPC ablation, which could be adopted in different neurological contexts to further advance our knowledge and understanding of OPC biology. Lulu joined the Petritsch lab in late October 2022 as a research scientist, seeking to understand the role of OPCs in the development of glioma as tumour-initiating cells and how they are regulated by complex interactions with several cell types within the tumour microenvironment, using a combination of transgenic mouse models, advanced imaging techniques and single cell biology approaches.
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Qianru Yang
Postdoctoral Scholar, Neurosurgery
Current Research and Scholarly InterestsDeep Brain Stimulation for treating Parkinson's disease
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Kelly H. Yoo, MD, PhD
Postdoctoral Scholar, Neurosurgery
BioDr. Kelly H. Yoo is a postdoctoral scholar in the Department of Neurosurgery at Stanford University, specializing in innovative therapeutic strategies for neurosurgical pathologies. She earned her M.D. and Ph.D. from Heidelberg University School of Medicine, where her doctoral research focused on combining CAR T cell immunotherapy with ibrutinib and a reactive oxygen species accelerator, PipFcB, for hematologic malignancies. Graduating in the top 1% of her class, Dr. Yoo was recruited early for her residency in neurosurgery, where she honed her expertise in the interdisciplinary application of combinatorial treatment strategies.
Building on the knowledge she gained during her doctoral training, she worked to integrate CAR T cell therapy with bevacizumab, temozolomide chemotherapy, and radiation therapy for neurosurgical patients with primary and recurrent glioblastoma. As part of the clinician-scientist track, Dr. Yoo has completed several certifications, including Good Clinical Practice, the Principal Investigators Course, the Clinical Trial Investigators Course, and the Munich Investigators Course. These experiences have equipped her to design translational research that effectively bridges the gap between bench and bedside.
Recognized as a top 0.1% resident by the Baden-Württemberg Medical Association for her exceptional clinical and research performance, Dr. Yoo joined the Department of Neurosurgery at Stanford University to advance her career through a postdoctoral fellowship. -
Sean Yoon
Stanford Student Employee, Neurosurgery
BioB.S. Candidate in Neuroengineering, co-advised by Prof. Ada Poon (Dept of EE) and Prof. Francis Willett (Dept of Neurosurgery)
Research Interests: Brain-Computer Interfaces, Neuroprosthesis, Deep Learning, Neuromorphics, Computational Neuroscience -
Moss Zhao
Instructor, Neurosurgery
BioDr. Moss Zhao is an Instructor at Department of Neurosurgery, Stanford University. He develops cutting-edge and clinically viable imaging technologies to improve the diagnosis and treatment of cerebrovascular diseases across the lifespan. His specific areas of expertise include physiological modeling, arterial spin labeling, Bayesian inference, PET/MRI, and artificial intelligence. His scientific contributions could significantly improve the early detection of strokes and dementia as well as enrich the knowledge of brain development in the first two decades of life.
Dr. Zhao received his DPhil at St Cross College of University of Oxford under the supervision of Prof. Michael Chappell. As an alumni mentor, he supports the career development of students of his alma mater. Since 2016, he has presented his work to more than 3000 delegates at international conferences and held leadership positions in professional societies. His research and teaching are supported by the American Heart Association, the National Institutes of Health, and the European Cooperation in Science and Technology. -
Sa Zhou
Postdoctoral Scholar, Neurosurgery
BioSa Zhou, Ph.D., received her Ph.D. in Biomedical Engineering from The Hong Kong Polytechnic University. Her research focuses on person-centered cognitive and physical enhancement for aging-related neurological disorders - including stroke, Parkinson’s disease (PD), and Alzheimer’s disease (AD) - through the development of closed-loop brain-computer interface (BCI)-guided neuromodulation and rehabilitation robotics, as well as the investigation of brain structural and functional connectivity using multimodal neuroimaging and electrophysiology.
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J. Bradley Zuchero
Associate Professor of Neurosurgery
Current Research and Scholarly InterestsWe are primarily focused on understanding myelinating glia (oligodendrocytes and Schwann cells). How is myelin formed, dynamically remodeled to support learning, and why does regeneration of myelin fail in disease? We are also interested in understanding novel roles of myelin in the nervous system, beyond its textbook role as an electrical insulator. We combine in vivo and primary culture models with the generation of new cell biology tools to answer these questions.
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Corinna Zygourakis, MD
Associate Professor of Neurosurgery
Current Research and Scholarly InterestsMy goal is to translate research into real-world action and decision-making so that my work can impact patients and the institutions in which they receive care. With a research focus on healthcare cost and quality of care, I approach neurosurgery in a unique way—one that applies business operations, economics, and healthcare delivery principles to our field. I have pursued formal LEAN business training, and believe in the importance of working together with other departments and administrators, as well as physicians and surgeons on the hospital and national level, to effect change. During my residency, I developed and led a multi-departmental prospective study at UCSF called OR SCORE (OR Surgical Cost Reduction Project) that brought together surgeons from the neurosurgery, orthopedics and ENT departments with nurses and administrators. OR SCORE successfully reduced surgical supply costs by nearly one million dollars in its first year by providing >60 surgeons with price transparency scorecards. This work led to a first-author publication in JAMA Surgery, but more importantly, set the foundation for further quality improvement and cost reduction efforts across the UCSF hospital system.
A volunteer neurosurgical mission trip to Guadalajara, Mexico, where limited resources create an OR environment that is strikingly more frugal than the U.S., inspired me to lead another project aimed at quantifying and reducing operating room waste at UCSF. I have also conducted research looking at the safety and outcomes of overlapping surgery, as well as several projects to define the factors underlying variation in cost for neurosurgical care using UCSF’s hospital data and national databases like the National Inpatient Sample, Vizient (formerly known as University Health Consortium), and Medicare.
As a clinical fellow at Johns Hopkins, I continued and expanded these research efforts. I designed and implemented an Enhanced Recovery after Surgery (ERAS) protocol at the Johns Hopkins Bayview hospital. This protocol standardized care for our spine patients, emphasizing pre-operative rehabilitation, psychiatric and nutritional assessments, and smoking cessation, as well as intra- and post-operative multi-modal pain therapy, early mobilization, and standardized antibiotic and bowel regimens. I also collaborated with engineers in the Johns Hopkins Carnegie Center for Surgical Innovation to develop better algorithms for intra-operative CT imaging, and provided assistance with operations to a basic science study looking at the role of cerebrospinal fluid drainage and duraplasty in a porcine model of spinal cord injury.
At Stanford, I am building a research group focused on: (1) perfecting paradigms for delivery of high-end technology in spinal care, including robotics and navigation, (2) implementing cost and quality strategies in large healthcare systems, and (3) computational analysis of big-data to effect real-time risk stratification and decision making in spine surgery. I'm excited to collaborate with my peers across surgical and medical departments, as well as business and engineering colleagues.