The architecture of tissue engineering scaffold has a strong effect on its functionality. The micro-computed tomography (?-CT) is a non-destructive X-ray irradiation based imaging method which has been widely used in scaffold characterization. The technique enables accurate visualization of the internal structures and morphology in two- and three-dimensions. In addition, image data can be used to calculate numerical values for several structural parameters including porosity and pores sizes. In the present study, the structure of five different types of joint scaffolds was studied using two different CT types. Studied scaffolds are designed for small joint (metacarpophalangeal joint) reconstruction. Imaging was performed using Planmeca ProM...
This study attempted to examine the feasibility of using medical Computerized Tomography (CT) imagin...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...
The architecture of tissue engineering scaffold has a strong effect on its functionality. The micro-...
Micro-computed tomography (Micro-CT) is an excellent method to analyze the internal architecture of ...
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...
Micro-CT (micro-computed tomography) is a modern preclinical imaging method allowing non-destructive...
The three-dimensional (3D) structure and architecture of biomaterial scaffolds play a critical role ...
The ever-growing field of materials with applications in the biomedical field holds great promise re...
This thesis is presented in two parts; the first part is a study of the structure and properties of ...
Background: Cell behavior is the key to tissue regeneration. Given the fact that most of the cells u...
The porous structure of beta-tricalcium phosphate (β-TCP) scaffolds was assessed by conventional his...
This paper illustrates the utility of micro-computed tomography (micro-CT) to study the process of t...
Journal of Biomedical Materials Research Part B: Applied Biomaterials. V. 70B, Issue 2, 2004, pp. 31...
This study attempted to examine the feasibility of using medical Computerized Tomography (CT) imagin...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...
The architecture of tissue engineering scaffold has a strong effect on its functionality. The micro-...
Micro-computed tomography (Micro-CT) is an excellent method to analyze the internal architecture of ...
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...
Micro-CT (micro-computed tomography) is a modern preclinical imaging method allowing non-destructive...
The three-dimensional (3D) structure and architecture of biomaterial scaffolds play a critical role ...
The ever-growing field of materials with applications in the biomedical field holds great promise re...
This thesis is presented in two parts; the first part is a study of the structure and properties of ...
Background: Cell behavior is the key to tissue regeneration. Given the fact that most of the cells u...
The porous structure of beta-tricalcium phosphate (β-TCP) scaffolds was assessed by conventional his...
This paper illustrates the utility of micro-computed tomography (micro-CT) to study the process of t...
Journal of Biomedical Materials Research Part B: Applied Biomaterials. V. 70B, Issue 2, 2004, pp. 31...
This study attempted to examine the feasibility of using medical Computerized Tomography (CT) imagin...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...