Min‐Ho Jun
Papers
2
Total Citations
16
H-Index
2
About
Min-Ho Jun is a biomedical engineer whose research focuses on the intersection of robotics, non-invasive sensing, and cardiovascular diagnostics. His key contributions lie in developing robotic tonometry systems that can precisely measure radial artery pulse waveforms, addressing a critical challenge: the positional errors inherent in manual pulse detection. In his 2020 work, Jun introduced a robotic applanation tonometry pulse sensor system with an integrated pulse sensor array, achieving high-accuracy pulse pressure index (PPI) detection. This innovation, validated using a pulse wave simulator, reduces operator dependency and enhances reproducibility in clinical settings. Building on this, his 2021 study developed a transfer function model that mathematically reconstructs internal arterial pulse pressures from external tonometric measurements—a vital step toward non-invasive, cuffless blood pressure monitoring. While his citation counts (12 and 4, respectively) reflect a growing, specialized field, Jun’s work is foundational for wearable and robotic health monitoring. His research promises to improve early detection of cardiovascular conditions, making pulse waveform analysis more accessible and reliable. For students and researchers, Jun’s work exemplifies how robotics and signal processing can transform traditional physiological measurement into precise, automated diagnostics.
Research Focus
Key Achievements
Top Papers
- 1
- 2