Bioelectric Medicine
Developing wearable electrical-stimulation technologies for tissue repair and regenerative medicine.
Biomedical Engineering · Bioelectric Medicine
Translating scientific ideas into technologies that can be modeled, built, tested, and applied.
LOOKING BEYOND THE SURFACE
Medical imaging and anatomical models allow us to investigate structures that cannot be understood from the surface alone.
FROM ANATOMY TO COMPUTATION
Segmentation, three-dimensional reconstruction, and finite-element modeling reveal how electrical stimulation interacts with tissue.
FROM COMPUTATION TO TECHNOLOGY
My work combines modeling, electronics, experimental research, and prototyping to develop practical biomedical technologies.
SCROLL
SELECTED DIRECTIONS
Developing wearable electrical-stimulation technologies for tissue repair and regenerative medicine.
Using medical imaging, anatomical segmentation, and finite-element modeling to understand electric-field distributions.
Connecting electronics, embedded systems, three-dimensional modeling, and experimentation to create biomedical devices.
ABOUT
My work combines engineering, biology, and computation to transform scientific ideas into technologies that can be modeled, built, tested, and translated into real-world applications.
Résumé section coming next