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A new esthetic fiber-reinforced polymer composite resin archwire: a comparative atomic force microscope (AFM) and field-emission scanning electron microscope (FESEM) study

机译:新型美学纤维增强聚合物复合树脂弓丝:比较原子力显微镜(AFM)和场发射扫描电子显微镜(FESEM)的研究

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BackgroundFiber-reinforced polymer composite (FRPC) archwires could provide an esthetic solution to conventional orthodontic archwires. This study was carried out with the following aims: (1) to compare the sliding friction of FRPC archwire with nickel titanium archwire using various archwire-bracket combinations and (2) to determine the correlation between surface roughness and friction of the FRPC and NiTi archwires.MethodsFour different brackets (Gemini? (Gemini-3M Unitek, St. Paul, MN, USA), ICE? (ICE-Ormco- Orange, CA, USA), Clarity? (Clarity-3M Unitek, St. Paul, MN, USA), and SmartClip? (SmartClip-3M Unitek, St. Paul, MN, USA)) in combination with FRPC wires and NiTi wires (0.018 in) were studied for archwire friction with simulated wear and surface roughness using scanning electron microscope (SEM) and atomic force microscope (AFM), respectively. Statistical analysis of frictional wear generated and surface roughness between the various archwire and bracket groups was evaluated by one-way ANOVA at 5% level. Least significant difference (LSD) multiple comparisons were used to determine the archwire-bracket group difference.ResultsGemini?-FRPC group generated the highest frictional wear (mean, 313.10; SD, 802.59) and ICE?-FRPC group produced the highest roughness values among all the groups tested (Ra?=?496.13?nm, RMS?=?635.49?nm). No correlation was found between frictional wear and surface roughness of the archwires of the various groups.ConclusionsFRPC archwire shows promise in its application as an esthetic aligning archwire. However, further research and refinement in its manufacture would be necessary to fully realize its potential as an esthetic archwire.
机译:背景技术纤维增强聚合物复合材料(FRPC)弓丝可以为常规的正畸弓丝提供美学解决方案。进行本研究的目的是:(1)使用各种弓丝支架组合比较FRPC弓丝与镍钛弓丝的滑动摩擦;(2)确定FRPC和NiTi弓丝的表面粗糙度与摩擦之间的相关性方法:四个不同的括号(Gemini?(Gemini-3M Unitek,美国明尼苏达州圣保罗),ICE?(ICE-Ormco-Orange,美国加利福尼亚州),Clarity?(Clarity-3M Unitek,明尼苏达州圣保罗,美国)和SmartClip?(SmartClip-3M Unitek,美国明尼苏达州圣保罗)与FRPC线和NiTi线(0.018英寸)组合使用扫描电子显微镜(SEM)研究了弓丝摩擦,并模拟了磨损和表面粗糙度)和原子力显微镜(AFM)。通过单向方差分析在5%的水平上评估了不同弓丝和支架组之间产生的摩擦磨损和表面粗糙度的统计分析。结果:Gemini?-FRPC组产生了最高的摩擦磨损(平均值为313.10; SD为802.59),而ICE?-FRPC组产生了最高的粗糙度值。所有测试的组(Ra = 496.13nm,RMS = 635.49nm)。在各个组的弓丝的摩擦磨损与表面粗糙度之间未发现相关性。结论FRPC弓丝在其作为美学对准弓丝的应用中显示出了希望。但是,有必要进一步研究和改进其制造方法,以充分发挥其作为美学弓丝的潜力。

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