This quantity is a suite of 22 leading edge learn papers from teh symposia on Nano-Biotechnology and Ceramics in Biomedical functions and Advances in Biomineralized Ceramics, Bioceramics, and Bioinspired Designs, which have been offered on the eighth Pacific Rim convention on Ceramics and Glass know-how (PACRIM-8). The symposia used to be occupied with numerous key components, together with novel synthesis strategies, bioglasses and glass-ceramics, calcium phosphates for bone tissue functions, and oxide ceramic implant purposes. those papers minimize throughout disciplines - ceramic technology and know-how, bioengineering and nanoscience - exhibiting new, intriguing box has emerged within the ceramics community.Content:
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Additional info for Advances in Bioceramics and Biotechnologies
It was difficult to control the microstructure when the loading exceeded 50%. Further optimization work is ongoing to clarify the variables for process optimization. It is suggested that the key to achieve a homogeneous coralline geometry coupled to high level of porosity would be to find an optimized level of all three parameters namely, temperature, cryoprotectant concentration and the loading. Influence of Freezing Temperature The effect of freezing temperature on the development of pore dimension in scaffolds fabricated using CFC for 20% solid loading is shown in Figure 7.
0 i i 10 i 1 20 i I 30 1 1 40 ■ ' 50 t i 60 t m 70 i 80 Solid Loading [%] Figure 4. Measured porosity versus solid loading for CFC scaffolds at -10°C sintered at 730°C (■ Bioglass) and 1100°C ( · HAP) It was shown in previous studies23 by the author that the mean pore diameter for Bioglass increases with the increase in sintering temperature due to ease with which glass flows thus producing more interconnected 3-D porous structures. However, in the present study, the temperature was maintained at a temperature, determined by DTA that corresponds to the end of the crystallization process, so as to specifically avoid the collapse of the interconnected scaffold network.
Foaming This generic technique of producing pores relies on the use of a foaming agent homogeneously dispersed in aqueous slurry of biomaterials or simply blowing gases through slurry. The method is unreliable, problematic to control the foaming process variables thus difficult to produce optimized pore structures. Gel-Casting This method, similar to slip casting, can produce complex-shaped profiles that are strong enough to be machined if necessary. A high content of ceramic or glass powders is suspended in an organic gel which polymerizes to form a cross-linked rigid green body.
Advances in Bioceramics and Biotechnologies