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Application of micro CT and computation modeling in bone tissue engineering

✍ Scribed by Ho Saey Tuan; Dietmar W. Hutmacher


Publisher
Elsevier Science
Year
2005
Tongue
English
Weight
898 KB
Volume
37
Category
Article
ISSN
0010-4485

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✦ Synopsis


Computer aided technologies, medical imaging, and rapid prototyping has created new possibilities in biomedical engineering. The systematic variation of scaffold architecture as well as the mineralization inside a scaffold/bone construct can be studied using computer imaging technology and CAD/CAM and micro computed tomography (CT). In this paper, the potential of combining these technologies has been exploited in the study of scaffolds and osteochondral repair. Porosity, surface area per unit volume and the degree of interconnectivity were evaluated through imaging and computer aided manipulation of the scaffold scan data. For the osteochondral model, the spatial distribution and the degree of bone regeneration were evaluated. In this study the versatility of two softwares Mimics (Materialize), CTan and 3D realistic visualization (Skyscan) were assessed, too.


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Optimization of bone-tissue engineering
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## Abstract Successful bone‐tissue engineering (TE) has been reported for various strategies to combine cells with a porous scaffold. In particular, the period after seeding until implantation of the constructs may vary between hours and several weeks. Differences between these strategies can be re