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Modeling and Reconstruction of Micro‐structured 3D Chitosan/Gelatin Porous Scaffolds Using Micro‐CT
- Source :
- AIP Conference Proceedings.
- Publication Year :
- 2008
- Publisher :
- American Institute of Physics, 2008.
-
Abstract
- Three dimensional (3D) channel networks are the key to promise the uniform distribution of nutrients inside 3D hepatic tissue engineering scaffolds and prompt elimination of metabolic products out of the scaffolds. 3D chitosan/gelatin porous scaffolds with predefined internal channels were fabricated and a combination of light microscope, laser confocal microscopy and micro‐CT were employed to characterize the structure of porous scaffolds. In order to evaluate the flow field distribution inside the micro‐structured 3D scaffolds, a computer reconstructing method based on Micro‐CT was proposed. According to this evaluating method, a contrast between 3D porous scaffolds with and without predefined internal channels was also performed to assess scaffolds’ fluid characters. Results showed that the internal channel of the 3D scaffolds formed the 3D fluid channel network; the uniformity of flow field distribution of the scaffolds fabricated in this paper was better than the simple porous scaffold without micro‐fluid channels.Three dimensional (3D) channel networks are the key to promise the uniform distribution of nutrients inside 3D hepatic tissue engineering scaffolds and prompt elimination of metabolic products out of the scaffolds. 3D chitosan/gelatin porous scaffolds with predefined internal channels were fabricated and a combination of light microscope, laser confocal microscopy and micro‐CT were employed to characterize the structure of porous scaffolds. In order to evaluate the flow field distribution inside the micro‐structured 3D scaffolds, a computer reconstructing method based on Micro‐CT was proposed. According to this evaluating method, a contrast between 3D porous scaffolds with and without predefined internal channels was also performed to assess scaffolds’ fluid characters. Results showed that the internal channel of the 3D scaffolds formed the 3D fluid channel network; the uniformity of flow field distribution of the scaffolds fabricated in this paper was better than the simple porous scaffold without micro‐...
- Subjects :
- food.ingredient
Materials science
technology, industry, and agriculture
Nanotechnology
Gelatin
Porous scaffold
law.invention
Chitosan
chemistry.chemical_compound
food
chemistry
Optical microscope
Tissue engineering
law
Confocal microscopy
Near-field scanning optical microscope
Micro ct
Biomedical engineering
Subjects
Details
- ISSN :
- 0094243X
- Database :
- OpenAIRE
- Journal :
- AIP Conference Proceedings
- Accession number :
- edsair.doi...........014ede9e5aff1166a51fb4fb3570cbdd
- Full Text :
- https://doi.org/10.1063/1.2990903