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Deposition Methods for Microstructured and Nanostructured Coatings on Metallic Bone Implants: A Review

机译:金属骨植入物上微结构和纳米结构涂层的沉积方法:综述

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摘要

A review of current deposition processes is presented as they relate to osseointegration of metallic bone implants. The objective is to present a comprehensive review of different deposition processes used to apply microstructured and nanostructured osteoconductive coatings on metallic bone implants. Implant surface topography required for optimal osseointegration is presented. Five of the most widely used osteoconductive coating deposition processes are reviewed in terms of their microstructure and nanostructure, usable thickness, and cost, all of which are summarized in tables and charts. Plasma spray techniques offer cost-effective coatings but exhibit deficiencies with regard to osseointegration such as high-density, amorphous coatings. Electrodeposition and aerosol deposition techniques facilitate the development of a controlled-microstructure coating at a similar cost. Nanoscale physical vapor deposition and chemical vapor deposition offer an alternative approach by allowing the coating of a highly structured surface without significantly affecting the microstructure. Various biomedical studies on each deposition process are reviewed along with applicable results. Suggested directions for future research include further optimization of the process-microstructure relation, crystalline plasma spray coatings, and the deposition of discrete coatings by additive manufacturing.
机译:提出了对电流沉积过程的综述,因为它们涉及金属骨植入物的骨整合。目的是呈现对用于在金属骨植入物上施加微结构和纳米结构骨导电涂层的不同沉积过程的全面审查。介绍了最佳骨整合所需的植入表面地形。在其微观结构和纳米结构,可用厚度和成本方面审查了五种最广泛使用的骨导电涂层沉积过程,所有这些都是在表格和图表中总结的。等离子喷涂技术提供具有成本效益的涂层,但在骨整合等方面具有缺陷,如高密度,无定形涂层。电沉积和气溶胶沉积技术以类似的成本促进了控制微观结构涂层的发展。纳米级物理气相沉积和化学气相沉积通过允许高度结构化的表面涂覆而不显着影响微观结构,提供替代方法。综述了各种沉积过程的各种生物医学研究以及适用的结果。建议的未来研究方向包括进一步优化过程 - 微结构关系,结晶等离子体喷涂和通过添加剂制造的离散涂层的沉积。

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