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Titlebook: Biomechanics and Biomaterials in Orthopedics; Dominique G. Poitout Book 2016Latest edition Springer-Verlag London 2016 Biomaterial.Biomech

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Markus H. Dahm,Sonja Hollerbachter. The composite strategy provides an effective way to fabricate scaffold biomaterial with tailorable physiochemical and/or mechanical properties. The composite scaffolds possessing both osteoconductivity and osteoinductivity appear to have a great potential for bone tissue engineering applications.
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Das Konzept und die Ergebnisse des SFB 187ent used to replace the bone loss or to seal reconstruction prostheses. It was thought that the antimitotic would be likely to be released into the surrounding tissues in the same way as many antibiotics. Diffusion into the surrounding tissues is well established for numerous antibiotics.
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Bone as Biomaterial specialisms to have an in-depth knowledge of the biomechanical properties of and what happens to foreign bodies implanted in the body, whether metallic or biological such as bone. Industrial researchers have to identify and then resolve the mechanical problems which arise when using inert (metallic
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Bioceramicsth and bone, to fix bone graft, fracture or prosthesis to bone, and to replace diseased tissue, are called bioceramics. They must be highly biocompatible and antithrombogenic, and should not be toxic, allergenic, carcinogenic nor teratogenic. Bioceramics can be classified into three groups: (1) bioi
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Biomaterials for Total Joint Replacementsllowing main biomaterials are discussed: (1) the ultra high molecular weight polyethylene (UHMWPE): standard, cross linked, stabilized with vitamin E; (2) the polymethylmethacrylate (PMMA): standard cement, cements with low temperature polymerization, antibiotic-loaded cements; (3) the ceramic mater
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