Area of research
Biomedical Engineering · Automotive Engineering
Research interest
Research interests include 3D Printing in Biomedical Research, Additive Manufacturing and 3D Printing Technologies, Innovative Microfluidic and Catalytic Techniques Innovation, and Bone Tissue Engineering Materials.
Bioprinted high cell density liver model with improved hepatic metabolic functions
Iohexol as a refractive index tuning agent for bioinks in high cell density bioprinting
<scp>3D</scp> printed nerve guidance conduit for biologics‐free nerve regeneration and vascular integration
Spatially organized cellular communities form the developing human heart
Heat-inducible CAR-T overcomes adverse mechanical tumor microenvironment in a 3D bioprinted glioblastoma model
3D Printing of a Biomimetic Myotendinous Junction Assisted by Artificial Intelligence
High cell density and high-resolution 3D bioprinting for fabricating vascularized tissues
Light-based vat-polymerization bioprinting
Phenotypically complex living materials containing engineered cyanobacteria
3D bioprinting of complex tissues in vitro: state-of-the-art and future perspectives
Biomimetic 3D living materials powered by microorganisms
Morpho-functional traits of the coral Stylophora pistillata enhance light capture for photosynthesis at mesophotic depths
Rapid 3D Bioprinting of Glioblastoma Model Mimicking Native Biophysical Heterogeneity
Rapid 3D BioPrinting of a human iPSC-derived cardiac micro-tissue for high-throughput drug testing
Compensating the cell-induced light scattering effect in light-based bioprinting using deep learning
Photopolymerizable Biomaterials and Light-Based 3D Printing Strategies for Biomedical Applications
Noninvasive in vivo 3D bioprinting
Three-dimensional bioprinted glioblastoma microenvironments model cellular dependencies and immune interactions
Two-dimensional optical spatial differentiation and high-contrast imaging
Biomaterials and 3D Bioprinting Strategies to Model Glioblastoma and the Blood–Brain Barrier
Direct 3D bioprinting of cardiac micro-tissues mimicking native myocardium
High throughput direct 3D bioprinting in multiwell plates
Oncogenic human herpesvirus hijacks proline metabolism for tumorigenesis
Mitigating Scattering Effects in Light-Based Three-Dimensional Printing Using Machine Learning
Biomimetic 3D-printed scaffolds for spinal cord injury repair
Rapid 3D printing of functional nanoparticle-enhanced conduits for effective nerve repair
Canonical Wnt5b Signaling Directs Outlying Nkx2.5+ Mesoderm into Pacemaker Cardiomyocytes
Controlled Growth Factor Release in 3D‐Printed Hydrogels
Rapid 3D bioprinting of in vitro cardiac tissue models using human embryonic stem cell-derived cardiomyocytes
BRITE Fellow: Intelligent Nanoscale 3D Biomanufacturing for Human-on-a-Chip
Rapid 3D Bioprinting of Engineered Bionic Corals towards Scalable Biofuel Manufacturing
EAGER: Three-Dimensional Printing of Functional Nanobots for Precision Gene Delivery
EAGER: Understanding Nano-Cardio Interactions Using 3D Bioprinted Human Heart Tissue
EAGER: Scanningless 3D Bioprinting of Multiple Biomaterials and Cells for Biomimetic Vascular Network
EAGER: Cybermanufacturing: Cloud-based, Rapid, Microscale 3D Bioprinting
Cell Modulation Using Biomaterials with a Negative Poisson's Ratio
SNM: Continuous and Scalable Nanomanufacturing for 3-Dimensional Functional Biomedical Devices
Collaborative Research: Nano-/femtosecond Laser Processing of Gas Impregnated Polymer for Biomedical Applications
Surface Plasmon-Assisted Nanolithography
Collaborative Research: Massive Parallel Laser Direct-Write of Sub-micron Dent Array for Quantum Leap of Fatigue Performance
Surface Plasmon-Assisted Nanolithography
Collaborative Research: Massive Parallel Laser Direct-Write of Sub-micron Dent Array for Quantum Leap of Fatigue Performance
Experimental and Theoretical Investigation of Laser-Nanoparticle Interactions
CAREER: Laser Micro- and Nano-Processing of Biodegradable Polymers for Biomedical and BioMEMS Applications
CAREER: Laser Micro- and Nano-Processing of Biodegradable Polymers for Biomedical and BioMEMS Applications