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Titlebook: Advances in Calcium Phosphate Biomaterials; Besim Ben-Nissan Book 2014 Springer-Verlag Berlin Heidelberg 2014 Bioactive composites.Bioacti

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https://doi.org/10.1007/978-3-030-18244-1e, and consequently the performance in terms of resorption, absorption, and regeneration of physiological bone. The differences in such available bioceramics were reported and critical data presented. Recent developments related to CaP scaffolds including improvements in terms of engineering chemist
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Building Safer Healthcare Systemstite layer as a tool for improving tissue compatibility, regardless of hard or soft tissues, stoichiometric apatite is not necessary but nonstoichiometric apatite, e.g., with calcium ion deficiency or partial carbonate ion substitution, is preferable. Such apatite is easily provided on the surface o
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Computing Logical Network Topologies, with CaPs in the form of coating layers or particulates and are immobilized in the CaP matrix forming a nanocomposite of the molecule and CaP. Various substrates are used for the coprecipitation. The molecules thus immobilized include laminin, fibronectin, bone morphogenic protein-2 (BMP-2), fibrob
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https://doi.org/10.1007/978-1-349-03225-9loited in bone tissue engineering. Their bioactive character is usually derived from the glass or glass–ceramic phase and is one of the most relevant properties to generate bone bonding. Herein we focus on the development of bioactive composite structures that target tissue engineering applications,
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https://doi.org/10.1007/978-1-349-03225-9rption by osteoclasts and bone formation by osteoblasts causes an absolute decrease in the amount of bone in osteoporosis. For that reason, it is necessary to fully understand the remodeling characteristics of bone grafts by osteoclasts and osteoblasts to high-bioactive materials. We have, therefore
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