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首页> 外文期刊>International endodontic journal >Defect propagation in NiTi rotary instruments: a noncontact optical profilometry analysis
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Defect propagation in NiTi rotary instruments: a noncontact optical profilometry analysis

机译:NITI旋转仪器中的缺陷传播:非接触式光学轮廓测量分析

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摘要

Abstract Aim To evaluate the presence and propagation of defects and their effects on surfaces of nickel–titanium (NiTi) instruments using noncontact, three‐dimensional optical profilometry, and to assess the accuracy of this method of investigation. Methodology The flute surface areas of instruments from two commercial instrumentation systems, namely Reciproc R25 ( n ?=?5) and WaveOne Primary ( n ?=?5), were assessed and compared before and after performing two instrumentation cycles in simulated root canals in clear resin blocks. All the analyses were conducted on areas measuring 211?×?211?μm, located 3?mm from the tips of the instruments. A quantitative analysis was conducted before and after the first and second instrumentation cycles, using the Sa (average roughness over the measurement field), Sq (root mean square roughness) and Sz (average height over the measurement field) amplitude parameters. All the data were submitted to statistical analysis at a 5% level of significance. Results There was a significant increase ( P? =?0.007) in wear in both groups, especially between baseline and the second instrumentation cycle, with significantly higher wear values being observed on WaveOne instruments (Sz median values?=?33.68 and 2.89?μm, respectively, for WO and RP groups). A significant increase in surface roughness ( P? =?0.016 and P? =?0.008, respectively, for Sa and Sq) was observed in both groups from the first to the second instrumentation cycle, mostly in WaveOne specimens. Qualitative analysis revealed a greater number of defects on the flute topography of all the instruments after use. Conclusions More defects were identified in WaveOne Primary instruments compared to Reciproc R25, irrespective of the evaluation stage. The investigation method provided an accurate, repeatable and reproducible assessment of NiTi instruments at different time‐points.
机译:摘要旨在评估缺陷的存在和繁殖及其对镍 - 钛(NITI)仪器表面的影响,使用非接触式,三维光学轮廓测定法评估这种调查方法的准确性。方法论来自两个商业仪表系统的仪器的长笛表面区域,即互联网R25(n?=Δ5)和波动初级(n?=Δ5),在模拟根运河中进行两次仪器循环之前和之后进行评估。透明树脂块。所有分析都在测量211?×211?μm的区域上,从仪器的尖端位于3Ωmm。在第一和第二仪器循环之前和之后进行定量分析,使用SA(测量场上的平均粗糙度),SQ(均方粗糙度)和SZ(测量场上的平均高度)幅度参数。所有数据都提交统计分析5%的重要性。结果两组磨损中的磨损均显着增加(p?= 0.007),特别是在基线和第二仪器周期之间,在波动仪器上观察到显着更高的磨损值(SZ中值值?=?33.68和2.89?μm分别用于WO和RP组)。在两个基团中,在从第一到第二仪器周期中,在两组中观察到表面粗糙度的显着增加(p?= 0.016和p≤0.008,对于SA和Sq),主要是在波动标本中。定性分析在使用后揭示了所有仪器的长笛形貌的缺陷。结论与Recroc R25相比,Wapone初级仪器中鉴定了更多缺陷,而不管评估阶段如何。该研究方法提供了在不同时间点对NITI仪器的准确,可重复和可重复的评估。

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