Stanford University
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Christian Figueroa
Undergraduate, History
BioChristian Figueroa is a political communications professional based in Southern California.
He is currently a senior communications aide at Derek Tran for Congress, one of the most competitive House races in the 2026 midterm elections, and previously held roles with U.S. Senator Alex Padilla, Los Angeles Mayor Karen Bass, and the California Democratic Party.
Aside from his day job, Christian is a passionate advocate for progressive policies in his community, serving on the executive board of the California Democratic Party. In 2024, he was one of the youngest delegates to represent California at the Democratic National Convention.
Christian studies history at Stanford University, specializing in early colonial America. He enjoys hiking, traveling, and watching documentaries in his free time. -
Marcos Figueroa
Access Service Specialist, School of Medicine - Lane Medical Library
Current Role at StanfordStanford University - School of Medicine - Lane Medical Library
Library Specialist-Circulation Evening Supervisor; Bills & Fines Coordinator -
Richard Fikes
Professor (Research) of Computer Science, Emeritus
BioRichard Fikes has a long and distinguished record as an innovative leader in the development of techniques for effectively representing and using knowledge in computer systems. He is best known as co-developer of the STRIPS automatic planning system, KIF (Knowledge Interchange Format), the Ontolingua ontology representation language and Web-based ontology development environment, the OKBC (Open Knowledge Base Connectivity) API for knowledge servers, and IntelliCorp's KEE system. At Stanford, he led projects focused on developing large-scale distributed repositories of computer-interpretable knowledge, collaborative development of multi-use ontologies, enabling technology for the Semantic Web, reasoning methods applicable to large-scale knowledge bases, and knowledge-based technology for intelligence analysts. He was principal investigator of major projects for multiple Federal Government agencies including the Defense Advanced Research Projects Agency (DARPA) and the Intelligence Community’s Advanced Research and Development Activity (ARDA).
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James Filice
Science and Engineering Associate/Machinist, Civil and Environmental Engineering
Current Role at StanfordDesign and Fabrication support to CEE Department with Machining, Drawing, NC programing and manufacturing, Welding, and wood working equipment.
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Paula Findlen
Ubaldo Pierotti Professor of Italian History and Professor, by courtesy, of French and Italian
BioI have taught the early history of science and medicine for many years on the premise that one of the most important ways to understand how science, medicine and technology have become so central to contemporary society comes from examining the process by which scientific knowledge emerged. I also take enormous pleasure in examining a kind of scientific knowledge that did not have an autonomous existence from other kinds of creative endeavors, but emerged in the context of humanistic approaches to the world (in defiance of C.P. Snow's claim that the modern world is one of "two cultures" that share very little in common). More generally, I am profoundly attracted to individuals in the past who aspired to know everything. It still seems like a worthy goal.
My other principal interest lies in understanding the world of the Renaissance, with a particular focus on Italy. I continue to be fascinated by a society that made politics, economics and culture so important to its self-definition, and that obviously succeeded in all these endeavors for some time, as the legacy of such figures as Machiavelli and Leonardo suggests. Renaissance Italy, in short, is a historical laboratory for understanding the possibilities and the problems of an innovative society. As such, it provides an interesting point of comparison to Gilded Age America, where magnates such as J.P. Morgan often described themselves as the "new Medici," and to other historical moments when politics, art and society combined fruitfully.
Finally, I have a certain interest in the relations between gender, culture and knowledge. Virginia Woolf rightfully observed at the beginning of the twentieth century that one could go to a library and find a great deal about women but very little that celebrated or supported their accomplishments. This is no longer true a century later, in large part thanks to the efforts of many scholars, male and female, who have made the work of historical women available to modern readers and who have begun to look at relations between the sexes in more sophisticated ways. Our own debates and disagreements on such issues make this subject all the more important to understand. -
Andrey Finegersh, MD, PhD
Assistant Professor of Otolaryngology - Head & Neck Surgery (OHNS)
BioDr. Finegersh is a fellowship-trained head and neck surgical oncologist with board certification in otolaryngology and an Assistant Professor with the Stanford School of Medicine Department of Otolaryngology.
He specializes in treatment of benign and malignant tumors of the head and neck and has received additional training in microvascular reconstruction and transoral robotic surgery. He takes tremendous pride in providing compassionate care for patients and managing challenging diagnoses.
Dr. Finegersh completed his MD and PhD degrees at the University of Pittsburgh School of Medicine's combined Medical Scientist Training Program. He went on to complete residency in otolaryngology at the University of California San Diego (UCSD) and his fellowship at Stanford University, where he stayed on as faculty.
He has extensive research experience in head and neck cancer epigenetics and completed post-doctoral research at the University of Pittsburgh and UCSD. He has received grants from the NIH and American Academy of Otolaryngology and has an active research lab studying molecular mechanisms of cancer. Dr. Finegersh has additional clinical interests in studying the role of minimally invasive surgery to improve outcomes for head and neck cancer patients. -
Thomas Fingar
Lecturer, FSI - S-APARC
Affiliate, FSI - CISACCurrent Research and Scholarly InterestsChinese domestic and foreign policy, US-China relations, US foreign policy, intelligence analysis, mega-trends and global challenges, geopolitical consequences of climate change
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Anna Finley Caulfield, MD
Clinical Professor, Adult Neurology
Current Research and Scholarly InterestsDr. Finley joined the Stanford Stroke Center in 2004 from Beth Israel Deaconess Medical Center in Boston. She cares for acute stroke patients and other neurologically critical ill patients in the intensive care unit. Currently, her research interests include hypothermia after cardiac arrest and comparing health care provider's predications of future neurological function in neurologically critical ill patients to their 6-month outcome.
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Chelsea Finn
Assistant Professor of Computer Science and of Electrical Engineering
BioChelsea Finn is an Assistant Professor in Computer Science and Electrical Engineering at Stanford University, and the William George and Ida Mary Hoover Faculty Fellow. Professor Finn's research interests lie in the ability to enable robots and other agents to develop broadly intelligent behavior through learning and interaction. Her work lies at the intersection of machine learning and robotic control, including topics such as end-to-end learning of visual perception and robotic manipulation skills, deep reinforcement learning of general skills from autonomously collected data, and meta-learning algorithms that can enable fast learning of new concepts and behaviors. Professor Finn received her Bachelors degree in Electrical Engineering and Computer Science at MIT and her PhD in Computer Science at UC Berkeley. Her research has been recognized through the ACM doctoral dissertation award, the Presidential Early Career Award for Scientists and Engineers, and the MIT Technology Review 35 under 35 list, and her work has been covered by various media outlets, including the New York Times, Wired, and Bloomberg. Throughout her career, she has sought to increase the representation of underrepresented minorities within CS and AI by developing an AI outreach camp at Berkeley for underprivileged high school students, a mentoring program for underrepresented undergraduates across three universities, and leading efforts within the WiML and Berkeley WiCSE communities of women researchers.
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Garrett Finucane
Postdoctoral Scholar, Earth System Science
BioI'm a physical oceanographer!
https://garrettfinucane.com/ -
Katie Fiocca
COLLEGE Lecturer, Civic, Liberal, and Global Education
BioKatie received a PhD in Biology at Drexel University in Philadelphia, PA, researching social insect nutritional physiology and chemical ecology. Additionally she earned a graduate minor in Undergraduate STEM Education through the Drexel Center for the Advancement of STEM Teaching and Learning Excellence.
She began her work at Stanford as an NSF Postdoctoral Research Fellow in the Biology Department, working to better understand the relationship between poison frog prey selection and their toxic ant diet. During her position, she also worked to broaden the participation of diverse identities in science, focusing on partnering with the local Bay Area community, including both students and high school teachers.
Currently, she is a COLLEGE Lecturer in Civic, Liberal, and Global Education with Stanford Introductory Studies. -
David Fiorentino, MD, PhD
Professor of Dermatology
Current Research and Scholarly InterestsFrom a clinical standpoint, I am particularly focused in the care of patients with myositis or systemic sclerosis. We offer clinical trials, including novel, cutting-edge cellular-based (e.g. chimeric antigen receptor, or, CAR T) therapies for these diseases. We are particularly interested in understanding the role of auto antigens in providing windows into disease pathogenesis, as well as their potential direct role of autoantibodies in causing disease.
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Kyla Lynne Fiorey
Life Science Research Professional 1, Urology - Divisions
Current Role at StanfordLife Science Research Professional
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Morris P. Fiorina
Wendt Family Professor and Senior Fellow at the Hoover Institution
BioMorris P. Fiorina is the Wendt Family Professor of Political Science and a Senior Fellow of the Hoover Institution. He received an undergraduate degree from Allegheny College and a Ph.D. from the University of Rochester, and taught at Caltech and Harvard before joining Stanford in 1998. Fiorina has written widely on American politics, with special emphasis on the study of representation, public opinion and elections. He has published numerous articles and written or edited thirteen books, including: Representatives, Roll Calls, and Constituencies; Congress--Keystone of the Washington Establishment; Retrospective Voting in American National Elections; The Personal Vote (coauthored with Bruce Cain and John Ferejohn); Divided Government; Civic Engagement in American Democracy (co-edited with Theda Skocpol), Culture War? The Myth of a Polarized America (with Samuel Abrams and Jeremy Pope), Disconnect: The Breakdown of Representation in American Politics (with Samuel Abrams), Can We Talk: The Rise of Rude, Nasty, Stubborn Politics (co-edited with Dan Shea) and most recently, Unstable Majorities. Fiorina has served on the editorial boards of a dozen journals in Political Science, Political Economy, Law, and Public Policy, and from 1986-1990 served as Chairman of the Board of Overseers of the American National Election Studies. He is an elected member of the American Academy of Arts and Sciences, the American Academy of Political and Social Sciences and the National Academy of Sciences. He has received Career Achievement Awards from the American Political Science Association’s Organized Sections on Elections, Public Opinion, and Voting Behavior, and Political Organizations and Parties.
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Andrew Fire
George D. Smith Professor of Molecular and Genetic Medicine and Professor of Pathology and of Genetics
Current Research and Scholarly InterestsWhile chromosomal inheritance provides cells with one means for keeping and transmitting genetic information, numerous other mechanisms have (and remain to be) discovered. We study novel cellular mechanisms that enforce genetic constancy and permit genetic change. Underlying our studies are questions of the diversity of inheritance mechanisms, how cells distinguish such mechanisms as "wanted" versus "unwanted", and of the consequences and applications of such mechanisms in health and disease.
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Daniel James Firl
Clinical Instructor, Surgery - Abdominal Transplantation
BioDaniel Firl is an abdominal transplant surgery fellow at Stanford Medicine and a surgeon-scientist working at the intersection of hepatobiliary cancer surgery and transplantation. His work centers on patient selection in primary liver cancer — determining which patients are best served by resection and which by transplantation — and on the risk-assessment tools that make that decision more precise.
He is a co-developer of HALT-HCC, a risk model for liver transplantation in hepatocellular carcinoma, and first author of its international validation across more than 4,000 patients. His aim is to make selection between resection and transplantation progressively more sophisticated — sharpening prediction of waitlist and post-transplant outcomes, informing donor selection, and enabling the safe use of grafts that might otherwise be declined — with a particular interest in intrahepatic cholangiocarcinoma and gallbladder cancer, where the role of transplantation is still being defined. He sees the next step as the integration of tumor genomics, bringing the molecular features of each cancer into the models that guide surgical decisions.
Earlier, during postdoctoral training at the Massachusetts General Hospital, he studied the immunology and physiology of kidney xenotransplantation, including the design and long-term function of organs from genetically engineered porcine donors — part of the broader effort to expand the supply of transplantable organs.
Dr. Firl completed general surgery residency at Duke University, where he served as chief resident, and earned his MD with Special Qualifications in Biomedical Research through the research-intensive program at the Cleveland Clinic Lerner College of Medicine of Case Western Reserve University. He holds a bachelor's degree in biochemistry from Boston College.
He is the author of over 30 peer-reviewed articles, with work in Nature, Cell, The Lancet Gastroenterology & Hepatology, Hepatology, and The Lancet Digital Health. He serves as an ad hoc reviewer for journals including The BMJ, Kidney International, the American Journal of Transplantation, JCO Precision Oncology, and Transplantation.
He has received fellowships and grant funding from prestigious organizations during competitive funding opportunities including from: the NIH-NIAID, Howard Hughes Medical Institute, and the American Society of Transplantation. -
Michael Fischbach
Liu (Liao) Family Professor
Current Research and Scholarly InterestsThe microbiome carries out extraordinary feats of biology: it produces hundreds of molecules, many of which impact host physiology; modulates immune function potently and specifically; self-organizes biogeographically; and exhibits profound stability in the face of perturbations. Our lab studies the mechanisms of microbiome-host interactions. Our approach is based on two technologies we recently developed: a complex (119-member) defined gut community that serves as an analytically manageable but biologically relevant system for experimentation, and new genetic systems for common species from the microbiome. Using these systems, we investigate mechanisms at the community level and the strain level.
1) Community-level mechanisms. A typical gut microbiome consists of 200-250 bacterial species that span >6 orders of magnitude in relative abundance. As a system, these bacteria carry out extraordinary feats of metabolite consumption and production, elicit a variety of specific immune cell populations, self-organize geographically and metabolically, and exhibit profound resilience against a wide range of perturbations. Yet remarkably little is known about how the community functions as a system. We are exploring this by asking two broad questions: How do groups of organisms work together to influence immune function? What are the mechanisms that govern metabolism and ecology at the 100+ strain scale? Our goal is to learn rules that will enable us to design communities that solve specific therapeutic problems.
2) Strain-level mechanisms. Even though gut and skin colonists live in communities, individual strains can have an extraordinary impact on host biology. We focus on two broad (and partially overlapping) categories:
Immune modulation: Can we redirect colonist-specific T cells against an antigen of interest by expressing it on the surface of a bacterium? How do skin colonists induce high levels of Staphylococcus-specific antibodies in mice and humans?
Abundant microbiome-derived molecules: By constructing single-strain/single-gene knockouts in a complex defined community, we will ask: What are the effects of bacterially produced molecules on host metabolism and immunology? Can the molecular output of low-abundance organisms impact host physiology?
3) Cell and gene therapy. We have begun two new efforts in mammalian cell and gene therapies. First, we are developing methods that enable cell-type specific delivery of genome editing payloads in vivo. We are especially interested in delivery vehicles that are customizable and easy to manufacture. Second, we have begun a comprehensive genome mining effort with an emphasis on understudied or entirely novel enzyme systems with utility in mammalian genome editing.