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Titlebook: Biomaterials for Implants and Scaffolds; Qing Li,Yiu-Wing Mai Book 2017 Springer-Verlag GmbH Germany 2017 Biodegradation.Biomimic design.P

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,Konzept für integrierte Beratung,dings of the present study, the combination of forming and cutting may also be recommended for clinical practice because it best matches the specified ideal stress level resulting in positive bone stimulation with minimum resorption. Stress information obtained in these three implant insertion scena
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https://doi.org/10.1007/978-3-8350-9640-0y and in general in the field of tissue engineering. They have proved to be efficient and effective, some with outperformance over other bioceramic and metal prostheses. It is our aim in this chapter to present the development of these important biomaterials focusing on the history, synthesis, prope
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Springers Angewandte Informatik will be investigated. Some of the latest techniques such as micro-CT imaging, in situ image-guided failure assessment and digital volume correlation (DVC) will be explored in the characterisation of the hydrogel scaffold under uniaxial compression.
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,Schlußbetrachtung und Ausblick,)-based homogenisation technique is employed to characterise effective material properties, and topology optimisation is carried out using the inverse homogenisation technique, in which (1) bulk modulus, (2) diffusivity and (3) their combination are formulated as the design objectives. To assess the
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https://doi.org/10.1007/978-3-322-99351-9angiogenesis, cementogenesis, drug delivery and antibacterial property. The future perspective of MBG scaffolds was further discussed for hard tissue regeneration application by harnessing their special multifunction.
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https://doi.org/10.1007/978-3-642-84174-3ve reproducible results regardless of patients’ age, gender and physical conditions. The second generation of ACI is a tissue engineering-based technique, which includes the use of appropriate cell type, bioactive molecules such as growth factors and proper scaffold to regenerate cartilage. The favo
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