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Titlebook: Bio-Materials and Prototyping Applications in Medicine; Paulo Jorge Bártolo,Bopaya Bidanda Book 2021Latest edition Springer Nature Switzer

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Silk-Based Materials and Composites: Fabrication and Biomedical Applications,. In addition, biological systems that have evolved against harsh environments in nature for a long period sometimes exhibit excellent properties and unique morphologies compared with man-made materials produced by conventional technologies. Hence, much research is devoted toward developing new fabr
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3D Topological Scanning and Multi-material Additive Manufacturing for Facial Prosthesis Developmente, requiring significant amounts of skilled labour and subjective manufacturing techniques. This chapter discusses the use of industrial optical scanning methods to capture the surface topology from a volunteer’s facial anatomy. This data was then used to generate a 3D CAD model, which was further u
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Medical Applications of Additive Manufacturing,flexibility, provides a highly customizable and patient-specific treatment which could reduce the treatment time, improve outcomes, and increase patients’ comfort and satisfaction. In this chapter, we first introduce the general additive manufacturing process adopted in medical applications. Major s
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Bioglasses for Bone Tissue Engineering,icine, the use of 3D porous structures aims to mimic the bone structure and to promote cell attachment and tissue regeneration. Between the materials used for bone tissue engineering, bioactive glasses have shown high bioactivity and potential stimulation of osteogenesis and angiogenesis. This book
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Peter-Ulrich Merz-Benz,Gerhard Wagnerdrogels, sponges, and tubes. Second, we explore a number of silk-derived materials that are obtained by either including a second phase in addition to silk such as in the case of composites or by chemically transforming silk into another material such as in the case of silk carbonization.
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Geselligkeit und Formale Soziologieer, a key challenge is the engineering of biomimetic hydrogels to promote the development of articular cartilage rather than fibrocartilage. Hydrogels can be designed through the selection of appropriate materials, crosslinking mechanisms, mechanical properties and the incorporation of biofunctional
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