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Bacterial colonisation of porous titanium coatings for orthopaedic implant applications effect of surface roughness and porosity

机译:骨科植入物多孔钛涂层的细菌定植对表面粗糙度和孔隙率的影响

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摘要

Bone ingrowth into and through porous coatings on orthopaedic implants can substantially improve fixation. However, the introduction of pores increases surface roughness and also the risk of bacterial adherence, which can lead to infection (in extreme cases, to death) and complicate implant surgery due to the high risk of revision being required. Improving osseointegration without increasing infection risk is therefore a major challenge in implantology. Staphylococcal adhesion and biofilm formation on Ti surfaces of varying roughness and porosity have been investigated in vitro. Porous pure titanium coatings, obtained by a PM processing route based on the electrophoretic deposition of TiH_2 followed by thermal treatment in vacuum, significantly reduced bacterial colonisation of the surface compared with a state-of-the-art vacuum plasma sprayed coating. Further reduction of biofilm formation could be obtained by additional surface modification.
机译:骨长入并穿过整形外科植入物上的多孔涂层可大大改善固定效果。然而,引入孔会增加表面粗糙度,并增加细菌附着的风险,由于需要进行翻修的高风险,会导致感染(在极端情况下甚至导致死亡)并使植入手术复杂化。因此,在不增加感染风险的情况下改善骨整合是移植术中的主要挑战。体外研究了葡萄球菌的粘附性和不同粗糙度和孔隙率的钛表面上的生物膜形成。与现有技术的真空等离子喷涂涂层相比,通过基于TiH_2的电泳沉积,然后在真空中进行热处理的PM工艺路线获得的多孔纯钛涂层,显着减少了表面的细菌定植。通过额外的表面修饰可以进一步减少生物膜的形成。

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