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Titlebook: Biomaterials for Musculoskeletal Regeneration; Applications Bikramjit Basu,Sourabh Ghosh Book 2017 Springer Nature Singapore Pte Ltd. 2017

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,Processing, Tensile and Fracture Properties of Injection Molded HDPE–Al2O3–HAp Hybrid Composites,toaddition. The tensile and flexural fracture properties are analyzed. The cytocompatibility with osteoblast-like cells and . mineralization are also discussed. More importantly, the osseointegration in rabbit model is qualitatively and quantitatively analyzed.
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https://doi.org/10.1007/3-540-27509-6he maturation of technology can be realized once one travels across different TRLs. Two illustrative examples are provided so that one can judge how to assign various TRLs at different levels of technology development in research on bone tissue engineering.
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Introduction,brief discussion in this chapter will set the platform for the readers to realise the significant thrust to develop implantable biomaterials with better host response for musculoskeletal applications.
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A Way Forward,ter. It has been emphasized that the optimization of the shape and size of the pores in the scaffolds is a challenging task in order to obtain the desired . cytocompatibility property. The chapter closes with the author’s perspective on developing biomedical research programs leading to device/implant fabrication.
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Konzepte der Theoretischen Pathologiebrief discussion in this chapter will set the platform for the readers to realise the significant thrust to develop implantable biomaterials with better host response for musculoskeletal applications.
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,Case Study: Hydroxyapatite–Titanium Bulk Composites for Bone Tissue Engineering Applications,romising biocompatibility properties. Despite several years of research, the mechanical properties of the HA-based composites still need to be enhanced to match the properties of natural cortical bone. In this regard, the scope of the present chapter is limited to discuss the processing and the mech
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