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Titlebook: Biomaterials in Clinical Practice; Advances in Clinical Fatima Zivic,Saverio Affatato,Kwang Leong Choy Book 2018 Springer International Pub

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Polymeric Biomaterials in Clinical Practiceterials, tissue-engineered products, etc. Undoubtedly, biomaterials have had a major impact on the practice of contemporary medicine and patient care in both saving and improving the quality of lives of humans and animals, and with the high-tech revolution, tremendous further goals will continue to
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Polymeric Biomaterials Based on Polylactide, Chitosan and Hydrogels in Medicineer, polylactic acid is very popular so called green ‘eco-friendly’ material with a most promising development prospect. Besides biocompatibility and biodegradability, natural polymer, chitosan, possess outstanding properties. Hydrogels are super absorbent polymeric materials with one of the main rol
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Polyethylene Based Polymer for Joint Replacementups, reinforcement as carbon fibres has been added in the polymeric matrix. The leading opinion is to develop a high strength reinforced polymeric matrix such as self-reinforced Ultra-High molecular weight polyethylene. With increasing patient longevity and activity levels, a search for the ultimate
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Biodegradable Metals as Biomaterials for Clinical Practice: Iron-Based Materialsorrosion control is a foundation in the development of these materials development and different aspects are also given. Iron-based materials need increased degradation rate because they are still more similar to the permanent implants, due to the slow corrosion process and various methods to overco
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Porous Metals in Orthopedics(porous) orthopedic implants are reviewed. Although biodegradable porous metals are shortly touched in this section, the emphasis is on the bio-inert materials as these comprise the majority of porous implants used today. The sixth section concludes this chapter and points out some practical aspects
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Properties and Behavior of Shape Memory Alloys in the Scope of Biomedical and Engineering ApplicatioMA loading, so SMA are known as highly thermosensitive materials what can be used as advantage, but also it can be a problem during the alloy production process. The strong thermomechanical coupling and the related high thermosensitivity increase the need for simulation of complex thermomechanical r
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Bioactive Biomaterials: Potential for Application in Bone Regenerative Medicineently used among these biomaterials due to similarity with the bone mineral phase. Another advantage from the use of ceramics is the presence of biologically active hydroxycarbonate apatite layer formed on the surface of these biomaterials, which represents the bonding interface with the tissues. Bi
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