The aim of regenerative medicine is replacing missing or damaged bone tissues with synthetic grafts based on porous interconnected scaffolds, which allow adhesion, growth, and proliferation of the human cells. The optimal design of such scaffolds, in the Bone Tissue Engineering field, should meet several geometrical requirements. First, they have to be customized to replicate the skeletal anatomy of the patient, and then they have to provide the proper trabecular structure to be successfully populated by the cells. Therefore, for modelling such scaffolds, specific design methods are needed to conceive extremely complex structures by controlling both macro and micro shapes. For this purpose, in the last years, the Computer Aided Design of Tr...
Design of Bone Tissue Engineering scaffolds (PS350 : Pore Size 350 µm and Strut Size 200 µm) using T...
This dataset enabled the researchers to design the tissue engineering scaffold computationally with ...
Periodic cellular materials such as body-centered cubic, face-centered cubic, and triply periodic mi...
The aim of regenerative medicine is replacing missing or damaged bone tissues with synthetic grafts ...
Every year, thousand of surgical treatments are performed in order to fix up or completely substitut...
The aim of Tissue Engineering is to develop biological substitutes that will restore lost morphologi...
In tissue engineering, biocompatible porous scaffolds that try to mimic the features and function of...
Bone defect repair, due to its complex process in nature, has become a costly issue in modern day me...
In orthopaedics, cellular structures can be used as three-dimensional porous biomaterials that try t...
Reproduction of the anatomical structures and functions of tissues using cells and designed 3D scaff...
Bone scaffolds are required to replace the painful and dangerous process of bone grafting, currently...
Triply Periodic Minimal Surfaces (TPMS) have earned great popularity in porous meta- biomaterials by...
In recent years, the triply periodic minimal surface (TPMS)-based scaffolds have been served as one ...
With the advances in biocompatible materials for additive manufacturing (AM) methods, triply periodi...
In tissue engineering, biocompatible porous scaffolds that try to mimic the features and function o...
Design of Bone Tissue Engineering scaffolds (PS350 : Pore Size 350 µm and Strut Size 200 µm) using T...
This dataset enabled the researchers to design the tissue engineering scaffold computationally with ...
Periodic cellular materials such as body-centered cubic, face-centered cubic, and triply periodic mi...
The aim of regenerative medicine is replacing missing or damaged bone tissues with synthetic grafts ...
Every year, thousand of surgical treatments are performed in order to fix up or completely substitut...
The aim of Tissue Engineering is to develop biological substitutes that will restore lost morphologi...
In tissue engineering, biocompatible porous scaffolds that try to mimic the features and function of...
Bone defect repair, due to its complex process in nature, has become a costly issue in modern day me...
In orthopaedics, cellular structures can be used as three-dimensional porous biomaterials that try t...
Reproduction of the anatomical structures and functions of tissues using cells and designed 3D scaff...
Bone scaffolds are required to replace the painful and dangerous process of bone grafting, currently...
Triply Periodic Minimal Surfaces (TPMS) have earned great popularity in porous meta- biomaterials by...
In recent years, the triply periodic minimal surface (TPMS)-based scaffolds have been served as one ...
With the advances in biocompatible materials for additive manufacturing (AM) methods, triply periodi...
In tissue engineering, biocompatible porous scaffolds that try to mimic the features and function o...
Design of Bone Tissue Engineering scaffolds (PS350 : Pore Size 350 µm and Strut Size 200 µm) using T...
This dataset enabled the researchers to design the tissue engineering scaffold computationally with ...
Periodic cellular materials such as body-centered cubic, face-centered cubic, and triply periodic mi...