首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >The Prevention of Implant Surface Alterations in the Treatment of Peri-Implantitis: Comparison of Three Different Mechanical and Physical Treatments
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The Prevention of Implant Surface Alterations in the Treatment of Peri-Implantitis: Comparison of Three Different Mechanical and Physical Treatments

机译:预防种植体表面改变在围种植体炎中的应用:三种不同机械和物理疗法的比较

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摘要

The surgical treatment of peri-implantitis is currently based on the removal of biofilms from the implant surface by primary means of mechanical and physical treatments. However, such approaches often determine some alterations of the implant surface with detrimental effects on re-osseointegration. This study aims to evaluate the effects of four different mechanical and physical treatments on titanium samples with moderately rough surface. Air powder abrasion (AP) with glycine powder, a titanium brush (TB) and a diode laser at 3 W (L3) and 4 W (L4) were tested. Surface morphology, roughness and chemical composition were then assessed by scanning electron microscope (SEM), white light interferometer and X-ray photoelectron spectroscopy (XPS), respectively. The microscopic analysis revealed significant alterations in surface morphology on TB samples, while AP and L3 had only a minor or null impact. L4 samples revealed signs of overheating due to the excessive power. Nevertheless, the overall roughness of the samples was not significantly altered in terms of roughness parameters. Similarly, surface chemical composition was not significantly affected by the treatments. Among the treatments tested in this study, air powder abrasion with glycine powder and 3 W diode laser had the lowest impact on surface physicochemical properties.
机译:当前,植入物周围炎的外科治疗基于通过机械和物理治疗的主要手段从植入物表面去除生物膜。但是,这些方法通常会确定植入物表面的某些变化,从而对骨整合造成不利影响。这项研究旨在评估四种不同的机械和物理处理对表面中等粗糙度的钛样品的影响。测试了甘氨酸粉对空气粉末的磨损(AP),钛刷(TB)和3 W(L3)和4 W(L4)的二极管激光器。然后分别通过扫描电子显微镜(SEM),白光干涉仪和X射线光电子能谱(XPS)评估表面形态,粗糙度和化学组成。显微镜分析表明,结核病样品的表面形态发生了显着变化,而AP和L3的影响很小或为零。 L4样品显示由于功率过大而导致过热的迹象。然而,样品的总粗糙度在粗糙度参数方面没有显着改变。同样,表面化学组成不受处理的影响。在这项研究中测试的处理方法中,甘氨酸粉和3 W二极管激光器对空气粉的磨损对表面物理化学性质的影响最小。

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