Flow in a mechanical bileaflet heart valve at laminar and near-peak systole flow rates: CFD simulations and experiments L Ge, HL Leo, F Sotiropoulos, AP Yoganathan | 133 | 2005 |
Enhanced and conventional project-based learning in an engineering design module KJ Chua, WM Yang, HL Leo International Journal of Technology and Design Education 24, 437-458, 2014 | 124 | 2014 |
A 3D printed microfluidic perfusion device for multicellular spheroid cultures LJY Ong, A Islam, R DasGupta, NG Iyer, HL Leo, YC Toh Biofabrication 9 (4), 045005, 2017 | 123 | 2017 |
Nanoparticle-based delivery system for application of siRNA in vivo Y Wang, Z Li, Y Han, L Hwa Liang, A Ji Current Drug Metabolism 11 (2), 182-196, 2010 | 123 | 2010 |
Fluid dynamic assessment of three polymeric heart valves using particle image velocimetry HL Leo, LP Dasi, J Carberry, HA Simon, AP Yoganathan Annals of biomedical engineering 34, 936-952, 2006 | 120 | 2006 |
Synthetic sandwich culture of 3D hepatocyte monolayer Y Du, R Han, F Wen, SN San San, L Xia, T Wohland, HL Leo, H Yu Biomaterials 29 (3), 290-301, 2008 | 104 | 2008 |
Laminar-flow immediate-overlay hepatocyte sandwich perfusion system for drug hepatotoxicity testing L Xia, S Ng, R Han, X Tuo, G Xiao, HL Leo, T Cheng, H Yu Biomaterials 30 (30), 5927-5936, 2009 | 91 | 2009 |
A pump‐free microfluidic 3D perfusion platform for the efficient differentiation of human hepatocyte‐like cells LJY Ong, LH Chong, L Jin, PK Singh, PS Lee, H Yu, A Ananthanarayanan, ... Biotechnology and bioengineering 114 (10), 2360-2370, 2017 | 90 | 2017 |
Microfluidic device for sheathless particle focusing and separation using a viscoelastic fluid J Nam, B Namgung, CT Lim, JE Bae, HL Leo, KS Cho, S Kim Journal of Chromatography A 1406, 244-250, 2015 | 89 | 2015 |
Numerical simulation of patient-specific left ventricular model with both mitral and aortic valves by FSI approach B Su, L Zhong, XK Wang, JM Zhang, R San Tan, JC Allen, SK Tan, S Kim, ... Computer methods and programs in biomedicine 113 (2), 474-482, 2014 | 87 | 2014 |
Bioresorbable polymeric scaffold in cardiovascular applications DWY Toong, HW Toh, JCK Ng, PEH Wong, HL Leo, S Venkatraman, ... International journal of molecular sciences 21 (10), 3444, 2020 | 84 | 2020 |
A robust high-throughput sandwich cell-based drug screening platform S Zhang, W Tong, B Zheng, TAK Susanto, L Xia, C Zhang, ... Biomaterials 32 (4), 1229-1241, 2011 | 78 | 2011 |
A review of numerical methods for red blood cell flow simulation M Ju, SS Ye, B Namgung, S Cho, HT Low, HL Leo, S Kim Computer methods in biomechanics and biomedical engineering 18 (2), 130-140, 2015 | 75 | 2015 |
Scalable alignment of three-dimensional cellular constructs in a microfluidic chip CG Anene-Nzelu, KY Peh, A Fraiszudeen, YH Kuan, SH Ng, YC Toh, ... Lab on a Chip 13 (20), 4124-4133, 2013 | 69 | 2013 |
Computational fluid dynamics modeling of hemodynamic parameters in the human diseased aorta: A systematic review CW Ong, I Wee, N Syn, S Ng, HL Leo, AM Richards, AMTL Choong Annals of Vascular Surgery 63, 336-381, 2020 | 65 | 2020 |
Microflow fields in the hinge region of the CarboMedics bileaflet mechanical heart valve design HL Leo, Z He, JT Ellis, AP Yoganathan The Journal of thoracic and cardiovascular surgery 124 (3), 561-574, 2002 | 63 | 2002 |
Comparison of the hinge flow fields of two bileaflet mechanical heart valves under aortic and mitral conditions HA Simon, HL Leo, J Carberry, AP Yoganathan Annals of biomedical engineering 32, 1607-1617, 2004 | 61 | 2004 |
Stretchable and self-adhesive PEDOT: PSS blend with high sweat tolerance as conformal biopotential dry electrodes J Cao, X Yang, J Rao, A Mitriashkin, X Fan, R Chen, H Cheng, X Wang, ... ACS Applied Materials & Interfaces 14 (34), 39159-39171, 2022 | 60 | 2022 |
Hybrid capillary-inserted microfluidic device for sheathless particle focusing and separation in viscoelastic flow J Nam, JKS Tan, BL Khoo, B Namgung, HL Leo, CT Lim, S Kim Biomicrofluidics 9 (6), 2015 | 54 | 2015 |
Stent member, artificial valve, and method of implanting the same HL Leo, KFJ Hon, F Cui, ZW Chan, GPK Vijayakumar, SKI Tan, HQ Phang US Patent 9,962,259, 2018 | 53 | 2018 |