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临床使用对镍钛根管器械物理-结构表面性能和电化学电势的影响。

Influence of clinical use on physical-structural surface properties and electrochemical potential of NiTi endodontic instruments.

机构信息

Department of Dental Clinic, Faculty of Dentistry, Federal University of Bahia, Salvador, BA, Brazil.

Department of Metallurgy and Materials, Federal University of Rio de Janeiro, Rio de Janeiro, RJ, Brazil.

出版信息

Int Endod J. 2018 May;51(5):515-521. doi: 10.1111/iej.12768. Epub 2017 Apr 29.

Abstract

AIM

To investigate the surface morphology and electrochemical potential of superelastic (SE), M-Wire (MW) and shape memory technology (SMT) NiTi instruments before and after single clinical use in vivo.

METHODOLOGY

A total of 60 ProTaper Universal F2 (PTU-SE), ProTaper Next X2 (PTN-MW), Typhoon (TYP), Hyflex (HF) and Vortex Blue (VB), the last three SMT, and size 25, .06 taper (n = 6 of each type) files were examined. Scanning electron microscopy (SEM), X-ray energy-dispersive spectroscopy (EDS) and electrochemical potential analysis were employed before and after clinical use. Statistical analysis was performed with one-way analysis of variance and Bonferroni's post hoc test. Significance was determined at the 95% confidence level for both tests.

RESULTS

SEM observations of new instruments indicated the presence of marks left by the machining process during manufacturing and EDS revealed the existence of an oxide coating on shape memory instruments. After clinical use, the five types were associated with propagation of transverse cracks 3 mm from the tip. The surface oxide layer of TYP, HF and VB instruments had microcracks in multiple directions, whilst TYP and HF had fragmentation in chip form of the oxide layer. EDS analysis demonstrated a significant reduction of the oxide layer in shape memory instruments, except for VB. Electrochemical potentials were higher for shape memory instruments than for M-Wire and superelastic NiTi instruments, respectively (P < 0.05).

CONCLUSIONS

It appears that shape memory technology NiTi instruments have a dysfunctional oxide layer after clinical use. Additionally, they featured higher electrochemical potential relative to NiTi instruments manufactured from M-Wire, and conventional superelastic NiTi alloy.

摘要

目的

研究超弹性(SE)、M-Wire(MW)和形状记忆技术(SMT)NiTi 器械在体内单次临床使用前后的表面形态和电化学电位。

方法

共检查 60 个 ProTaper Universal F2(PTU-SE)、ProTaper Next X2(PTN-MW)、Typhoon(TYP)、Hyflex(HF)和 Vortex Blue(VB),后三种为 SMT,以及尺寸为 25、.06 锥度(每种类型各 6 个)的锉。使用扫描电子显微镜(SEM)、X 射线能量色散光谱(EDS)和电化学电位分析对临床使用前后进行了检查。采用单因素方差分析和 Bonferroni 事后检验进行统计学分析。两种检验均以 95%置信水平确定显著性。

结果

新器械的 SEM 观察表明制造过程中存在加工痕迹,EDS 显示形状记忆器械存在氧化层。临床使用后,五种器械均与距尖端 3mm 处横向裂纹的扩展有关。TYP、HF 和 VB 器械的表面氧化层出现多个方向的微裂纹,而 TYP 和 HF 则出现氧化层碎片。EDS 分析表明,除 VB 外,形状记忆器械的氧化层显著减少。形状记忆器械的电化学电位均高于 M-Wire 和超弹性 NiTi 器械(P<0.05)。

结论

似乎形状记忆技术 NiTi 器械在临床使用后具有功能失调的氧化层。此外,与由 M-Wire 和传统超弹性 NiTi 合金制造的 NiTi 器械相比,它们具有更高的电化学电位。

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