We develop photonic and optoelectronic interfaces that enable precise control and monitoring of neural systems using light. By integrating nanophotonic structures, optoelectronic materials, and neural engineering, we aim to achieve high-resolution modulation of neural activity and establish new approaches for understanding and interacting with the nervous system.
We develop advanced ocular devices for vision restoration, augmentation, and ophthalmic therapy. Our research combines soft and implantable electronics, optoelectronic interfaces, and biointegrated systems to create retinal prostheses and other ocular technologies that seamlessly interface with the delicate structures of the eye.
We develop soft, flexible, and stretchable bioelectronic systems that conform naturally to biological tissues. By integrating novel materials, micro/nanofabrication, and device engineering, we create mechanically compliant interfaces for high-quality neural recording, stimulation, and long-term integration with biological systems.