In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue growth. In scaffold design, it is imperative to be able to quantify the pore sizes and more importantly the interconnects between the pores. X-ray micro-computed tomography (μCT) has become a popular tool for obtaining 3D images of scaffold biomaterials, however images are only qualitative. In this work, methods were developed for obtaining pore size distributions for both the macropores and their interconnects. Scaffolds have been developed, by foaming sol–gel derived bioactive glasses, which have the potential to fulfil the criteria for an ideal scaffold for bone tissue engineering. μCT images were obtained from scaffolds with different po...
International audiencePorous structures are becoming more and more important in biology and material...
International audienceDifferent biomaterials have been proposed as scaffolds for the delivery of cel...
Image processing permits scientists to investigate morphological properties of three-dimensional str...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...
A three dimensional (3D), interconnected, porous structure is essential for bone tissue engineering ...
A complete morphologic characterization of porous scaffolds for tissue engineering application is fu...
The three-dimensional (3D) structure and architecture of biomaterial scaffolds play a critical role ...
This thesis is presented in two parts; the first part is a study of the structure and properties of ...
In the design of tissue engineering scaffolds, design parameters including pore size, shape and inte...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
Tissue engineering applications commonly encompass the use of three-dimensional (3D) scaffolds to pr...
3D scaffolds for tissue engineering typically need to adopt a dynamic culture to foster cell distrib...
Micro-computed tomography (Micro-CT) is an excellent method to analyze the internal architecture of ...
In this paper, we describe the methodology that we have designed to quantify the pores distribution ...
The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds ...
International audiencePorous structures are becoming more and more important in biology and material...
International audienceDifferent biomaterials have been proposed as scaffolds for the delivery of cel...
Image processing permits scientists to investigate morphological properties of three-dimensional str...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...
A three dimensional (3D), interconnected, porous structure is essential for bone tissue engineering ...
A complete morphologic characterization of porous scaffolds for tissue engineering application is fu...
The three-dimensional (3D) structure and architecture of biomaterial scaffolds play a critical role ...
This thesis is presented in two parts; the first part is a study of the structure and properties of ...
In the design of tissue engineering scaffolds, design parameters including pore size, shape and inte...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
Tissue engineering applications commonly encompass the use of three-dimensional (3D) scaffolds to pr...
3D scaffolds for tissue engineering typically need to adopt a dynamic culture to foster cell distrib...
Micro-computed tomography (Micro-CT) is an excellent method to analyze the internal architecture of ...
In this paper, we describe the methodology that we have designed to quantify the pores distribution ...
The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds ...
International audiencePorous structures are becoming more and more important in biology and material...
International audienceDifferent biomaterials have been proposed as scaffolds for the delivery of cel...
Image processing permits scientists to investigate morphological properties of three-dimensional str...