Area of research
Biomedical Engineering · Surgery
Research interest
Research focused on Voronoi diagram and Scaffold, with related work in Coating, Tissue engineering, Regeneration (biology). Notable publications include '3D printed TC4 titanium alloy bone scaffolds with TNTs-VA-PLGA composite coating on the surface: Improved infection resistance and biocompatibility', 'Mechanical and Permeability Properties of Radial-Gradient Bone Scaffolds Developed by Voronoi Tessellation for Bone Tissue Engineering', and 'Comparative Study on Tissue Differentiation of Bone Marrow Mesenchymal Stem Cells in Irregular Versus Regular Bone Tissue Engineering Scaffolds'.
Comparative Study on Tissue Differentiation of Bone Marrow Mesenchymal Stem Cells in Irregular Versus Regular Bone Tissue Engineering Scaffolds
Fabrication of Functionally Fused Porous Tantalum/Lithium Magnesium Silicate Polymer Bone Repair Scaffolds
Preparation of porous TC4 bone scaffold VEGF-Si/HA-TiO2 nanotube composite coating: crystal structure improvement and bio sustained release promoting angiogenesis and osteogenic regeneration
Structural Design of Implant Fusion Based on Triple Period Minimal Surface and Its Performance Analysis
Preparation of Porous Tc4 Bone Scaffold Vegf-Si/Ha-Tio2 Nanotube Composite Coating: Crystal Structure Improvement and Bio Sustained Release Promoting Angiogenesis and Osteogenic Regeneration
Optimized design, mechanical response and mass transport properties of Voronoi-based controlled lattice-inspired gradient metamaterial structures
3D printed TC4 titanium alloy bone scaffolds with TNTs-VA-PLGA composite coating on the surface: Improved infection resistance and biocompatibility
Mechanical and Permeability Properties of Radial-Gradient Bone Scaffolds Developed by Voronoi Tessellation for Bone Tissue Engineering
The effect of early weight-bearing on bone fusion after triple arthrodesis