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Titlebook: Biomaterials in Orthopaedics and Bone Regeneration; Design and Synthesis Preetkanwal Singh Bains,Sarabjeet Singh Sidhu,Chan Book 2019 Sprin

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Computational Tailoring of Orthopaedic Biomaterials: Design Principles and Aiding Tools,placements, and bone scaffolds. The computational methods involved in their design scenarios are presented, and some efficient tools are introduced to aid in the development of more reliable and optimal biomaterials.
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Development of Cellular Construction for the Jaw Bone Defects Replacement by Selective Laser Meltinrties of the obtained samples correspond to the bone tissue properties. Developmental models of jaw implants for the study of the bone structures regeneration after the introduction of implants in laboratory animals have been produced. Observation of the animals did not reveal the rejection of impla
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Passive Prosthetic Ankle and Foot with Glass Fiber Reinforced Plastic: Biomechanical Design, Simulaber of numerical experiments, and the response surface methodology is utilized to establish the input factors and the output strain energy. Based on the well-established mathematical model, the differential evolution algorithm is applied to the best geometric parameters of the ankle–foot. The result
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,Surface Characteristics and In Vitro Corrosion Behavior of HAp-coated 316L Stainless Steel for Biomistance with a corrosion rate of 0.0972 mm/year compared to substrate exhibited a higher corrosion rate of 1.79 mm/year. The observations validate the improved corrosion protection and bioactivity of 316L stainless steel for biomedical applications.
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,Manufacturing and Evaluation of Corrosion Resistance of Nickel-Added Co–30Cr–4Mo Metal Alloy for Ors of . (corrosion potential) and . (corrosion current density). The results showed that the addition of nickel in the base matrix (i.e. Co–30Cr–4Mo) the corrosion resistance increases with the increase of nickel content. The obtained findings indicate that the addition of nickel in the base matrix i
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Fabrication and In Vitro Corrosion Characterization of 316L Stainless Steel for Medical Applicationthe second phase, a critical review on the in vitro bioactivity analysis of SS-based biomaterial has been presented. The chapter also presents the future scope for the development and surface modification of biomedical implants.
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