Overview
My reserach sits at the intersection of developing non-invasive physiological sensing system using wearable smartwatch and radar sensors for continuous physiological monitoring to early disgnosis and intervention of diseases.
Current Duke Appointments & Affiliations
Postdoctoral Associate
Biomedical Engineering,
Pratt School of Engineering
Recent Scholarly Works
The 2026 global roadmap for textile-integrated wearable technologies in health.
Journal article Physiological measurement · July 2026 Wearable and textile-based technologies are transforming health monitoring by enabling continuous, non-invasive, and context-aware assessment of physiological and biochemical signals in daily life. Advances in flexible electronics, conductive fibers, smart ... Full text CiteNon-Contact Monitoring and Recognition of Varied Respiratory Patterns From Dual-Subject Across Sleep Postures Using CW Radar
Journal article IEEE Journal of Electromagnetics RF and Microwaves in Medicine and Biology · March 1, 2026 Objectives: Non-contact and continuous respiratory monitoring is vital for detecting health risks such as sleep apnea, cardiac events, and respiratory disorders. Non-contact methods using Radar offer an unobtrusive solution but face challenges when multipl ... Full text CiteNoncontact Arterial Pulse Wave Measurement in a Two-Subject Scenario Using Millimeter-Wave Radar
Journal article IEEE Sensors Letters · October 1, 2025 Noncontact radar-based arterial pulse wave measurement in multisubject scenarios with multiple people remains a critical challenge because multiple echoes are received from various body parts of multiple subjects. This letter explores the feasibility of us ... Full text CiteRecent Grants
Mobile technologies to screen for prediabetes and type 2 diabetes in asymptomatic adults
ResearchPostdoctoral Associate · Awarded by National Institute of Diabetes and Digestive and Kidney Diseases · 2023 - 2028View All Grants