International audiencePorous structures are becoming more and more important in biology and material science because it helps in reducing the density of the grafted material. For biomaterials, porosity also increases the accessibility of cells and vessels inside the grafted area. However, descriptors of porosity are scanty. We have used a series of biomaterials with different types of porosity (created by various porogens: fibers, beads ...). Blocks were studied by microcomputed tomography for the measurement of 3D porosity. 2D sections were re-sliced to analyze the microarchitecture of the pores and were transferred to image analysis programs: star volumes, interconnectivity index, Minkowski-Bouligand and Kolmogorov fractal dimensions were...
A complete morphologic characterization of porous scaffolds for tissue engineering application is fu...
Image analysis has gained new effort in the scientific community due to the chance of investigating ...
A three dimensional (3D), interconnected, porous structure is essential for bone tissue engineering ...
Porous structures are becoming more and more important in biology and material science because they ...
International audiencePorous structures are becoming more and more important in biology and material...
Porosity is an important factor to consider in a large variety of materials. Porosity can be visuali...
The macrophysical properties of granular biomaterials used to fill bone defects have rarely been con...
The main aim of this study was to analyze microtomographic data to determine the geo-metric dimensio...
Hydroxyapatite scaffold is a type of bio-ceramic. Its cellular design has similarities with the morp...
Porous bioceramics for bone repair should ideally mimic the micro-architectural characteristics of b...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...
This thesis is presented in two parts; the first part is a study of the structure and properties of ...
In this paper, we describe the methodology that we have designed to quantify the pores distribution ...
The objective of this thesis is to provide an improved characterization of porous scaffolds. A more ...
The porous structure of biomaterials plays a critical role in improving the efficiency of biomateria...
A complete morphologic characterization of porous scaffolds for tissue engineering application is fu...
Image analysis has gained new effort in the scientific community due to the chance of investigating ...
A three dimensional (3D), interconnected, porous structure is essential for bone tissue engineering ...
Porous structures are becoming more and more important in biology and material science because they ...
International audiencePorous structures are becoming more and more important in biology and material...
Porosity is an important factor to consider in a large variety of materials. Porosity can be visuali...
The macrophysical properties of granular biomaterials used to fill bone defects have rarely been con...
The main aim of this study was to analyze microtomographic data to determine the geo-metric dimensio...
Hydroxyapatite scaffold is a type of bio-ceramic. Its cellular design has similarities with the morp...
Porous bioceramics for bone repair should ideally mimic the micro-architectural characteristics of b...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...
This thesis is presented in two parts; the first part is a study of the structure and properties of ...
In this paper, we describe the methodology that we have designed to quantify the pores distribution ...
The objective of this thesis is to provide an improved characterization of porous scaffolds. A more ...
The porous structure of biomaterials plays a critical role in improving the efficiency of biomateria...
A complete morphologic characterization of porous scaffolds for tissue engineering application is fu...
Image analysis has gained new effort in the scientific community due to the chance of investigating ...
A three dimensional (3D), interconnected, porous structure is essential for bone tissue engineering ...