Neural Dynamics & Multimodal Biomedical Imaging
Integrating electrophysiology, neurophotonics, photoacoustics, and laser-speckle imaging to resolve neural and neurovascular dynamics.
Lun-De Liao leads an interdisciplinary research program integrating neuroengineering, biomedical electronics, multimodal biomedical imaging, intelligent medical devices, artificial intelligence, and digital health to create clinically deployable systems for brain and human health.
Integrating electrophysiology, neurophotonics, photoacoustics, and laser-speckle imaging to resolve neural and neurovascular dynamics.
Integrating biomedical electronics with wearable, wireless, AI-enabled, and nanomaterial-driven sensing platforms around consequential unmet clinical needs.
Integrating artificial intelligence, engineering measurement, clinical validation, and real-world deployment in a coherent translational pathway.
Why it matters: synchronized views of electrophysiology, blood flow, oxygenation, and tissue response connect disease mechanisms with therapeutic effects.
Why it matters: rapid, quantitative, noncontact assessment can support clinical decisions in wounds, shock, and peripheral circulation.
Why it matters: continuous sensing and machine intelligence enable remote care, mental-health support, and proactive safety.
Joint research, bilateral forums, international scientific communities, and interdisciplinary training turn individual projects into durable capability—and give emerging researchers a global platform.