Signature Research Topics

Translating fundamental advances into new tools and techniques that save lives

For more than 50 years, Duke Biomedical Engineering has been at the forefront of innovation, building on pioneering advances in cardiac electrophysiology, biomaterials, and medical ultrasound—including the invention of real-time 3D ultrasonic scanning.

Today, our faculty lead cutting-edge research spanning biomaterials, bioelectric engineering, biomedical imaging and device development, computational and data-driven medicine, and cellular and molecular engineering.

The field of biomedical engineering is always evolving, but our mission remains steadfast. Our community is always working to improve human health through innovative research at the intersection of engineering and biomedical science. Duke BME’s skilled researchers are continually developing innovative technologies and therapies that support precision medicine, preventive care, and personalized health while addressing challenges such as chronic disease, aging, health inequities, and the responsible use of health data and technology.

Revolutionizing Clinical Impact

The department’s proximity to Duke University Medical Center has fostered a highly interdisciplinary approach. Duke BME engineers work closely with Duke’s biological scientists and physicians.

Our undergraduate and graduate students conduct research with the guidance of Duke BME faculty researchers—a community of innovators that includes many winners of prestigious scientific awards.

doctor teaching medical students

$38.8M in new research awards

fiscal year 2025

Innovative translational partnership

with the Wallace H. Coulter Foundation

Entrepreneurial Success

Duke BME faculty have founded more than 28 startups based on their research

Major Research Programs

Bioelectric Engineering

Research spans the development of advanced cardiac muscle models and the creation of innovative tools and technologies to better understand, diagnose and treat neurological disorders

biomaterials magnified

Biomaterials Science

Leveraging decades of expertise in biomaterials, researchers create innovative soft materials, nanomaterials, immune-active materials and engineered scaffolds for regenerative medicine applications

A graphic shows how blood flows through our arteries at the cellular and particulate level.

Biomedical Computation, Automation, & Data Science

By integrating computational modeling, simulation, high-performance computing and data analysis, researchers reveal the biological mechanisms that drive complex systems and inform new experimental approaches

An illustration of microscopes show various freely moving organisms illuminated in different neon colors

Biomedical Imaging and Device Development

Our community advances the science of imaging through innovations in imaging physics, mathematical modeling, image acquisition and processing, hardware development and clinical translation

A slice of tissue is illuminated using different fluorescent tags

Biomolecular and Cellular Engineering

By combining molecular biology, genetic engineering, synthetic biology and computational modeling, researchers uncover fundamental cellular mechanisms and develop novel therapeutic strategies

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