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This good combination of mechanical properties makes them potential biomedical materials for hard tissue replacement.
As the Zr 12Mo xTi alloys are based on biocompatible elements, this good combination of biomechanical characteristics makes them potential biomedical materials for hard tissue replacements.
Furthermore, according to the results, the porous MgZn alloy could be considered one of the most promising scaffold materials for hard tissue regeneration.
Subsequently, the diverse biomaterials and approaches for hard tissue engineering are exemplified through analysis of specific investigations for design of nanostructured materials for hard tissue engineering scaffolds.
Understanding the basic processes in intrafibrillar mineralization of reconstituted collagen creates opportunities for the design of tissue engineering materials for hard tissue repair and regeneration.
The results illustrate that the combinatorial approach is a powerful and cost effective tool for the development and optimization of new materials for hard coatings.
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The optimized hydrogel samples having appropriate range of physical characteristics and functionality suggest the application of the 3D structures as scaffold material for hard tissue construction.
Norman G. Gaylord, a versatile industrial chemist who helped develop a safe and permeable material for hard contact lenses that allowed oxygen to reach the eye, thus avoiding a common lens problem, died Tuesday in Boynton Beach, Fla.
We discuss the electronic origins of the possible isostructural decomposition in these materials relevant for hard coatings applications.
Applications of the property trends to materials selection for hard coatings demonstrate that this approach can be used, not only to interpret existing experimental observations, but also to predict new materials with the desired properties for coating design.
This good combination of mechanical properties indicates them potential biomedical materials for biological hard tissue replacements.
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