Upload Records Snowball Search Search OpenAlex
About the database ScholarIQanswers from OpenAlex & ORCID
How has Hwa Liang Leo's publication output changed over time?
ScholarIQpublication output · 2005–2025
Output grew0% over the shown period — from 1 works in 2005 to 1 in 2025.
1
1
1
1
1
2
1
1
1
1
2005200620072013201520172019202020222025
What are the most-cited papers on Hwa Liang Leo?
ScholarIQmost cited works
Flow in a Mechanical Bileaflet Heart Valve at Laminar and Near-Peak Systole Flow Rates: CFD Simulations and Experiments
Liang Ge, Hwa Liang Leo, Fotis Sotiropoulos, Ajit P. Yoganathan
Journal of Biomechanical Engineering. 2005112 Citations
A 3D printed microfluidic perfusion device for multicellular spheroid cultures
Louis Jun Ye Ong, Anik Islam, Ramanuj DasGupta, Narayanan Gopalakkrishna Iyer, Hwa Liang Leo, Yi‐Chin Toh
S26035906. 2017111 CitationsOPEN ACCESS
Bioresorbable Polymeric Scaffold in Cardiovascular Applications
Daniel Wee Yee Toong, Han Wei Toh, Jaryl Ng, Philip Wong, Hwa Liang Leo, Subramanian Venkatraman, Lay Poh Tan, Hui Ying Ang, Ying Huang
International Journal of Molecular Sciences. 2020106 CitationsOPEN ACCESS
Fluid Dynamic Assessment of Three Polymeric Heart Valves Using Particle Image Velocimetry
Hwa Liang Leo, Lakshmi Prasad Dasi, Josie Carberry, Hélène Simon, Ajit P. Yoganathan
Annals of Biomedical Engineering. 200696 Citations
Stretchable and Self-Adhesive PEDOT:PSS Blend with High Sweat Tolerance as Conformal Biopotential Dry Electrodes
Jian Cao, Xingyi Yang, Jiancheng Rao, Aleksandr Mitriashkin, Xing Fan, Rui Chen, Hanlin Cheng, Xinchao Wang, James Cho‐Hong Goh, Hwa Liang Leo, Jianyong Ouyang
S164001016. 202291 Citations
Related on ScholarIQ
National University of Singapore
Institution
Flow in a Mechanical Bileaflet Heart Valve at Laminar and Near-Peak Systole Flow Rates: CFD Simulations and Experiments
Paper
A 3D printed microfluidic perfusion device for multicellular spheroid cultures
Paper
Bioresorbable Polymeric Scaffold in Cardiovascular Applications
Paper
Fluid Dynamic Assessment of Three Polymeric Heart Valves Using Particle Image Velocimetry
Paper
Stretchable and Self-Adhesive PEDOT:PSS Blend with High Sweat Tolerance as Conformal Biopotential Dry Electrodes
Paper