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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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Integration in die klassische Beratung, surface roughness and surface morphology is also detailed. In particular, this chapter presents the studies on surface and subsurface damage mechanism using both finite element analysis (FEA) and experimental measurement. At the end of the chapter, potential future developments of dental ceramic resurfacing are given.
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Clinical Resurfacing of Feldspar and Leucite Glass Ceramics Using Dental Handpieces and Burs, surface roughness and surface morphology is also detailed. In particular, this chapter presents the studies on surface and subsurface damage mechanism using both finite element analysis (FEA) and experimental measurement. At the end of the chapter, potential future developments of dental ceramic resurfacing are given.
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Historische Wurzeln der Beratungsformen,materials and the host tissues of the musculoskeletal system. Mechanical factors are a key part of this interaction. This chapter investigates the potential of computational modelling and simulation approaches at multiple length scales to elucidate the response of musculoskeletal tissues to orthopae
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,Konzept für integrierte Beratung, and biocompatible properties. Nevertheless, there still is a range of biomechanics and biomaterials issues with titanium implants, such as delayed/insufficient osseointegration and limited shear-load bearing capacity in clinic. In order to tackle these problems, various physical and chemical treatm
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Integration in die klassische Beratung,esurfacing procedure by using air-turbine dental handpieces. It begins with description of feldspar and leucite glass ceramics as restorative and prosthetic materials in dentistry. A description of condition monitoring of simulated clinical resurfacing processes is provided, including in-process mea
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https://doi.org/10.1007/978-3-8350-9640-0d improved solutions in the exciting multidisciplinary fields of implants and scaffold tissue engineering. Polymers are rapidly replacing other traditional biomaterials such as metals and ceramics attributable to their versatility. Material properties of polymers will be discussed in a context speci
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,Reflexionen über die Beratungsformen,nds, polymer composites with inorganic particles, such as HA and CNT, are widely used. And the alignment of reinforced fibres is beneficial to improve the mechanical properties and biological response of scaffolds. Further, the physical and chemical surface modifications for electrospun fibres are c
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