Area of research
Biomedical Engineering · Automotive Engineering
Research interest
Research interests include 3D Printing in Biomedical Research, Bone Tissue Engineering Materials, Additive Manufacturing and 3D Printing Technologies, and Electrospun Nanofibers in Biomedical Applications.
Biomaterials in Postoperative Adhesion Barriers and Uterine Tissue Engineering.
Characterization of hydrogel-scaffold mechanical properties and microstructure by using synchrotron propagation-based imaging.
Development of a deep learning method for phase retrieval image enhancement in phase contrast microcomputed tomography.
Gynecologic postoperative anti-adhesion barriers: From biomaterials to barrier development.
On the Rheological Properties and Printability of Sodium Alginate-Carboxymethyl Chitosan Composite Solutions for Tissue Scaffold Printing.
Decomposition of blood flow in a cerebral artery with an aneurysm
Development of A deep Learning-based algorithm for High-Pitch helical computed tomography imaging
Extrusion Bioprinting of Scaffolds for Tissue Engineering
Development and Evaluation of an Alginate-Decellularized Uterine Extracellular Matrix Hydrogel for 3D Bioprinting of Uterine Constructs
Genome-wide association analyses identify distinct genetic architectures for age-related macular degeneration across ancestries
Multi-objective optimization for designing porous scaffolds with controllable mechanics and permeability: A case study on triply periodic minimal surface scaffolds
Design and evaluation of TPMS-inspired 3D-printed scaffolds for bone tissue engineering: Enabling tailored mechanical and mass transport properties
Synthesis of Alginate/Collagen Bioink for Bioprinting Respiratory Tissue Models.
Development of a Nanoparticle System for Controlled Release in Bioprinted Respiratory Scaffolds.
Recent frontiers in biofabrication for respiratory tissue engineering
Comparison study on hyaline cartilage versus fibrocartilage formation in a pig model by using 3D-bioprinted hydrogel and hybrid constructs.
Integration of bioprinting advances and biomechanical strategies for<i>in vitro</i>lung modelling.
Cardiac Tissue Engineering: A Journey from Scaffold Fabrication to In Vitro Characterization.
Turbulent blood flow in a cerebral artery with an aneurysm.
Bioprinting of Tissue Scaffolds
Development of a low-dose strategy for propagation-based imaging helical computed tomography (PBI-HCT): high image quality and reduced radiation dose.
Design and optimization of Anisotropy–Inspired AlSi10Mg metamaterials with tailored mechanics and mass transport properties in tissue engineering
Extrusion Bioprinting of Scaffolds: An Introduction
Mechanical Properties of Native Tissues and Scaffolds
Controlled Release of Biomolecules in Printed Scaffolds
Bioprinting of Vascular Networks in Scaffolds
Preparation of Biomaterial Solutions and Characterization of Their Flow Behavior
Biomaterials and Bioinks for Bioprinting
Biomaterials / bioinks and extrusion bioprinting.