Cost & earnings at University of Oregon What students borrow here, and what they go on to earn
The PhD in Medical Illustration and Informatics at the University of Oregon is an interdisciplinary research degree combining advanced biomedical visualisation, computational informatics and human-centred design. It suits students who want to develop research-led visual communication tools, novel visualisation methods and informatics solutions for healthcare, medical education and biomedical research.
This research-focused PhD integrates theory and practice across medical illustration, data and clinical informatics, computer graphics, and human–computer interaction. Programme components typically include advanced coursework in visualisation theory and practice, computational methods for biomedical image analysis, anatomy and physiological modelling for visual communication, user-centred design and evaluation methods, and ethics and policy in health data.
Structure normally comprises a period of advanced coursework and research training, a qualifying or comprehensive examination, development of an original research proposal, followed by supervised dissertation research leading to a defended thesis. Students typically work closely with faculty across departments, and may participate in lab rotations, collaborative projects with clinical partners, and community-facing outreach or teaching.
Successful applicants usually hold a master's degree (or equivalent) in medical illustration, informatics, computer science, biomedical sciences, design, or a closely related discipline; strong candidates with a relevant bachelor's plus substantial professional or research experience may also be considered. Applications should demonstrate both technical competence and visual communication ability.
Some units may request GRE scores or additional materials; prospective students are advised to contact the programme or potential supervisors to discuss fit and available supervision before applying.
Graduates of this PhD are prepared for a wide range of research-led and leadership roles where deep expertise in both biomedical visual communication and informatics is required. Typical career paths include:
The University of Oregon offers an interdisciplinary environment that supports the convergence of arts, design and computational science. Students benefit from collaboration across campus units—such as computing and data science, biology and health-related partners—and from proximity to clinical and research organisations in the region. The university provides access to specialised facilities commonly used by students in this field, including advanced visualisation studios, 3D printing and fabrication labs, and immersive/VR equipment.
Faculty working with the programme typically bring mixed backgrounds in biomedical visualisation, informatics, HCI and design research, enabling students to pursue projects that blend creative practice with rigorous computational methods. The campus culture emphasises applied research, community engagement and translation of work into educational resources, clinical tools and public-facing communication, making it a strong setting for doctoral study that aims to impact both scholarship and practice in health and biomedical communication.
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