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Biomimetic Creation of Surfaces on Porous Titanium for Biomedical Applications

机译:生物医学应用多孔钛的仿生生物染色

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Titanium and titanium alloys have been extensively studied for many applications in the area of bone tissue engineering. However, dense titanium is prone to lead into aseptic loosening due to their high elastic modulus compared to natural bone. One way to lower the elastic modulus is to produce a porous structure of the metallic alloy by adjusting its porosity. Another concern is the bioinertness of titanium that have no direct chemical bonding with surrounding tissue. One approach to improve the healing process is the application of a calcium phosphate coating onto the surface of biomedical devices and implants. Biomimetic creation of surface using alkali heat treatment with silica addition was employed in this study. It was demonstrated that the biomimetic methods are suitable for inducing apatite on the titanium alloys surface.
机译:钛和钛合金已广泛研究了骨组织工程领域的许多应用。然而,与天然骨相比,由于其高弹性模量,致密钛易于导致无菌松动。降低弹性模量的一种方法是通过调节其孔隙率来产生金属合金的多孔结构。另一个问题是钛的生物助性,其与周围组织没有直接化学键合。改善愈合过程的一种方法是将磷酸钙涂层施加到生物医学装置和植入物表面上。本研究采用了使用碱热处理的表面生长表面。结果证明,仿生方法适合于在钛合金表面上诱导磷灰石。

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