# Hwa Liang Leo

**Type:** Researchers  
**Canonical URL:** https://scholariq.org/researchers/hwa-liang-leo/

## Facts

| Field | Value |
| --- | --- |
| Citations | 3,365 |
| Field | Cardiac Valve Diseases and Treatments |
| h-index | 32 |
| i10-index | 94 |
| Last Known Institution | National University of Singapore |
| OpenAlex ID | https://openalex.org/A5020442677 |
| ORCID iD | 0000-0003-0592-6470 |
| Works | 221 |

## Researcher papers

- [Flow in a Mechanical Bileaflet Heart Valve at Laminar and Near-Peak Systole Flow Rates: CFD Simulations and Experiments](https://scholariq.org/papers/flow-in-a-mechanical-bileaflet-heart-valve-at-laminar-and-near-peak-systole-flow/)
- [A 3D printed microfluidic perfusion device for multicellular spheroid cultures](https://scholariq.org/papers/a-3d-printed-microfluidic-perfusion-device-for-multicellular-spheroid-cultures/)
- [Bioresorbable Polymeric Scaffold in Cardiovascular Applications](https://scholariq.org/papers/bioresorbable-polymeric-scaffold-in-cardiovascular-applications/)
- [Fluid Dynamic Assessment of Three Polymeric Heart Valves Using Particle Image Velocimetry](https://scholariq.org/papers/fluid-dynamic-assessment-of-three-polymeric-heart-valves-using-particle-image/)
- [Stretchable and Self-Adhesive PEDOT:PSS Blend with High Sweat Tolerance as Conformal Biopotential Dry Electrodes](https://scholariq.org/papers/stretchable-and-self-adhesive-pedot-pss-blend-with-high-sweat-tolerance-as/)
- [Microfluidic device for sheathless particle focusing and separation using a viscoelastic fluid](https://scholariq.org/papers/microfluidic-device-for-sheathless-particle-focusing-and-separation-using-a/)
- [A pump‐free microfluidic 3D perfusion platform for the efficient differentiation of human hepatocyte‐like cells](https://scholariq.org/papers/a-pump-free-microfluidic-3d-perfusion-platform-for-the-efficient-differentiation/)
- [Synthetic sandwich culture of 3D hepatocyte monolayer](https://scholariq.org/papers/synthetic-sandwich-culture-of-3d-hepatocyte-monolayer/)
- [Computational Fluid Dynamics Modeling of Hemodynamic Parameters in the Human Diseased Aorta: A Systematic Review](https://scholariq.org/papers/computational-fluid-dynamics-modeling-of-hemodynamic-parameters-in-the-human/)
- [Enhanced and conventional project-based learning in an engineering design module](https://scholariq.org/papers/enhanced-and-conventional-project-based-learning-in-an-engineering-design-module/)
- [Rapid prediction of cell-free layer thickness: A semi-analytical hemorheological model for blood flow in stenosed vessels](https://scholariq.org/papers/rapid-prediction-of-cell-free-layer-thickness-a-semi-analytical-hemorheological/)

## Researcher topics

- [Cardiac Valve Diseases and Treatments](https://scholariq.org/topics/cardiac-valve-diseases-and-treatments/)
- [Cardiovascular Function and Risk Factors](https://scholariq.org/topics/cardiovascular-function-and-risk-factors/)
- [Coronary Interventions and Diagnostics](https://scholariq.org/topics/coronary-interventions-and-diagnostics/)
- [Aortic Disease and Treatment Approaches](https://scholariq.org/topics/aortic-disease-and-treatment-approaches/)
- [Aortic aneurysm repair treatments](https://scholariq.org/topics/aortic-aneurysm-repair-treatments/)

## Researcher university

- [National University of Singapore](https://scholariq.org/institutions/national-university-of-singapore/)

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Source: ScholarIQ — public research metadata, principally OpenAlex. See https://scholariq.org/sources/ for provenance and https://scholariq.org/methodology/ for what these figures mean.
