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.
A research portfolio distinguished by original discoveries, influential scholarship, internationally recognized achievements, and technologies translated into practice.
His early work with Prof. Chin-Teng Lin advanced wearable and wireless brain–computer interfaces. He subsequently established multimodal neurovascular platforms integrating photoacoustic imaging with electrophysiology, and developed laser speckle contrast imaging for noncontact assessment of microcirculation, wound perfusion, and clinical hemodynamics.
A record of 136 SCI journal papers and an H-index of 42 spanning neuroengineering, biomedical imaging, biomedical electronics, intelligent medical devices, artificial intelligence, and digital health.
Recognition includes the IFMBE Young Investigator Award, the 59th Ten Outstanding Young Persons of Taiwan, Future Tech Awards, and multiple National Innovation Awards.
A translation portfolio built around clinical value and real-world adoption, with 20 issued patents across Taiwan and the United States, five licensed technologies, and six technology-transfer agreements.
Joint research, bilateral forums, international scientific communities, and interdisciplinary training turn individual projects into durable capability—and give emerging researchers a global platform.