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Three dimensional visualization of engineered bone and soft tissue by combined x-ray micro-diffraction and phase contrast tomography

Academic Article
Publication Date:
2014
abstract:
Computed x-ray phase contrast micro-tomography is the most valuable tool for a three dimensional (3D) and non destructive analysis of the tissue engineered bone morphology. We used a Talbot interferometer installed at SYRMEP beamline of the ELETTRA synchrotron (Trieste, Italy) for a precise 3D reconstruction of both bone and soft connective tissue, regenerated in vivo within a porous scaffold. For the first time the x-ray tomographic reconstructions have been combined with x-ray scanning micro-diffraction measurement on the same sample, in order to give an exhaustive identification of the different tissues participating to the biomineralization process. As a result, we were able to investigate in detail the different densities in the tissues, distinguishing the 3D organization of the amorphous calcium phosphate from the collagen matrix. Our experimental approach allows for a deeper understanding of the role of collagen matrix in the organic-mineral transition, which is a crucial issue for the development of new bio-inspired composites.
Iris type:
01.01 Articolo in rivista
Keywords:
X-ray micordiffraction; X-ray phase contrast tomography; tissue engineering; engineered bone
List of contributors:
Cedola, Alessia; Campi, Gaetano; Bukreeva, Inna; Fratini, Michela
Authors of the University:
BUKREEVA INNA
CAMPI GAETANO
CEDOLA ALESSIA
FRATINI MICHELA
Handle:
https://iris.cnr.it/handle/20.500.14243/333473
Published in:
PHYSICS IN MEDICINE AND BIOLOGY
Journal
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