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By Roger Narayan, P. N. Kumta, W. R. Wagner

A set of articles from the Advances in Biomedical and Biomimetic fabrics symposium supply perception into advances in biomedical and biomimetic fabrics. those chosen articles hide such themes as scaffolds for tissue engineering, bioceramics, biomimetic fabrics, nanoparticles for clinical analysis and remedy, and novel fabrics for drug supply and biosensing.

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Whereas the cement A does not present any change with the time, B cement present variations with time. In the figures, the peaks corresponding to a-TCP and HA are indicated. At initial time, the reactants are forming the predominant phases, while HA peaks increase with time and the a-TCP peaks decreasing. After 7 days the mechanical properties of B cement reached the maximum, the peaks of zirconium oxide were constant during the reaction because this material is inert in this system. Advances in Biomedical and Biomimetic Materials .

Microstructure for mechanical efficiency. Proc. R. Soc. Lond. Ashby, Cellular solids: structure and properties. 2nded. Weinkamer,Nature's hierarchical materials. Prog. Mater. Sci. Fratz1, Cell-wall recovery after irreversible deformation of wood. Nature Mater. D. Curry, The design of mineralized hard tissues for their mechanical functions. J Exp. Biol. 202,3285-94 (1999). "G. Meyer, Rigid biological systems as models for synthetic composites. Science 310, 1144-7 (2005) I3C. G. Guille, Biomimetism and bioinspiration as tools for the design of innovative materials and systems.

1). Freezing of aqueous hydroxyapatite suspension leads to a lamellar-type microstructure (Fig. la), similar to the structure of nacre (Fig. lb). By modifying the freezing behavior of the aqueous solvent of the suspensions, through additions of an organic solvent such as glycerol or dioxane, constructs that mimic the structure of human cancellous bone (Fig. lc,d), and cuttlefish bone (Fig. le,Q are obtained. The microstructures of the freeze-cast constructs can be classified into three general types: lamellar, 20 .

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