Area of research
Biomedical Engineering · Automotive Engineering
Research interest
Research interests include 3D Printing in Biomedical Research, Innovative Microfluidic and Catalytic Techniques Innovation, Bone Tissue Engineering Materials, and Additive Manufacturing and 3D Printing Technologies.
Multi-material digital light processing bioprinting of hydrogel-based microfluidic chips
Three-dimensional printing of metals for biomedical applications
Effective bioprinting resolution in tissue model fabrication
Bioprinters for organs-on-chips
Cardiac Fibrotic Remodeling on a Chip with Dynamic Mechanical Stimulation
Microfluidics‐Enabled Multimaterial Maskless Stereolithographic Bioprinting
Aqueous Two‐Phase Emulsion Bioink‐Enabled 3D Bioprinting of Porous Hydrogels
Multiscale bioprinting of vascularized models
Coaxial extrusion bioprinting of 3D microfibrous constructs with cell-favorable gelatin methacryloyl microenvironments
Rapid Continuous Multimaterial Extrusion Bioprinting
Bioprinted thrombosis-on-a-chip
Development and characterization of a bioglass/chitosan composite as an injectable bone substitute
Understanding How Microstructure and Interstitial Fluid Pressure Gradient Modulate Cell Invasion in a Bioprinted Tumor-On-a-Chip
Collaborative Research: Mimicking Stress-Mediated Invasive Solid Tumor Using Bioprinted Microtissue and Acoustofluidics
I-Corps: Volumetric Light-Assisted Manufacturing of Dental Implants and Tissue Scaffolds
I-Corps: A customizable handheld bioprinter for the in situ deposition of self-healing and polymer-based hydrogels
I-Corps: A customizable handheld bioprinter for the in situ deposition of self-healing and polymer-based hydrogels
I-Corps: New image processing programs and data modeling algorithms for education environments