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Current and future biocompatibility aspects of biomaterials for hip prosthesis

机译:髋关节假体用生物材料的当前和未来生物相容性方面

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The field of biomaterials has turn into an electrifying area because these materials improve the quality and longevity of human life. The first and foremost necessity for the selection of the biomaterial is the acceptability by human body. However, the materials used in hip implants are designed to sustain the load bearing function of human bones for the start of the patient’s life. The most common classes of biomaterials used are metals, polymers, ceramics, composites and apatite. These five classes are used individually or in combination with other materials to form most of the implantation devices in recent years. Numerous current and promising new biomaterials i.e. metallic, ceramic, polymeric and composite are discussed to highlight their merits and their frailties in terms of mechanical and metallurgical properties in this review. It is concluded that current materials have their confines and there is a need for more refined multi-functional materials to be developed in order to match the biocompatibility, metallurgical and mechanical complexity of the hip prosthesis.
机译:生物材料领域已成为一个激动人心的领域,因为这些材料提高了人们的生活质量和寿命。选择生物材料的首要条件是人体可接受性。但是,用于髋关节植入物的材料旨在在患者生命开始时维持人体骨骼的承重功能。使用的最常见的生物材料类别是金属,聚合物,陶瓷,复合材料和磷灰石。近年来,这五类被单独使用或与其他材料结合使用以形成大多数植入装置。在本综述中,讨论了许多当前和有前途的新型生物材料,即金属,陶瓷,聚合物和复合材料,以突出它们的优缺点以及机械和冶金性能。结论是,目前的材料有其局限性,需要开发出更多精制的多功能材料以匹配髋关节假体的生物相容性,冶金学和机械复杂性。

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