| Literature DB >> 31149617 |
Wafaa A Khalil1, Zuhair S Natto2.
Abstract
OBJECTIVES: The purpose of this study was to evaluate the cyclic fatigue, bending resistance, and surface roughness of EdgeEvolve (EdgeEndo) and ProTaper Gold (Dentsply Tulsa Dental Specialties) nickel-titanium (NiTi) rotary files.Entities:
Keywords: Cyclic fatigue test; EdgeEvolve; Nickel titanium rotary instrument; ProTaper Gold; Scanning electron microscopy; Universal testing machine
Year: 2019 PMID: 31149617 PMCID: PMC6529793 DOI: 10.5395/rde.2019.44.e19
Source DB: PubMed Journal: Restor Dent Endod ISSN: 2234-7658
Figure 1Experimental setup used in this study (A), and single- (B) and double- (C) curved artificial canals.
Number of cycles to fracture (NCF), bending resistance, and surface roughness average (Ra), and fractured segment lengths
| Group | NCF | Bending resistance (N) | Ra (nm) | Segment length (mm) | ||
|---|---|---|---|---|---|---|
| Single curvature | Double curvature | Single curvature | Double curvature | |||
| EdgeEvolve | 3,871.80 ± 33.91Aa | 569.10 ± 11.55Ab | 0.13 ± 0.01A | 27.93 ± 4.30A | 5.43 ± 0.21Aa | 2.56 ± 0.23Ab |
| ProTaper Gold | 1,036.40 ± 59.62Ba | 482.40 ± 13.05Bb | 0.28 ± 0.08B | 90.36 ± 3.57B | 4.80 ± 0.86Aa | 2.54 ± 0.74Ab |
Different uppercase superscripts indicate statistically significant differences between the files.
Different lowercase superscripts indicate statistically significant differences between single- and double curvature canals.
Figure 2X-ray energy dispersive spectrometric analysis of the tested files showing similar nickel and titanium proportions.
Figure 3Surface roughness of the tested files. (A, B) Three-dimensional atomic force microscope images and (C, D) scanning electron micrograph images. (A, C) ProTaper Gold; (B, D) EdgeEvolve.
Ra, surface roughness average.
Figure 4Representative scanning electron micrograph showing cross-sections after cyclic fatigue fracture in (A-C) ProTaper Gold and (D-F) EdgeEvolve files. (A) Representative two-level fracture of the ProTaper Gold. The dotted area corresponds to the fatigue striations and propagation while arrow represent the overload area. (B) Represents magnification of the fatigue striations (dotted) area and crack origin in (A). (C) Back scattered micrograph of the lateral view of the ProTaper Gold showing that the surface pitting and irregular cracks were near the fracture site. (D) Representative cross sections after cyclic fatigue fracture an EdgeEvolve file. The dotted area corresponds to the fatigue striations and propagation while arrows represent the overload area. (E) Magnification of the fatigue striations (dotted) area in (D) showing slow propagation of cracks. (F) Back scattered micrograph showing the lateral view of the EdgeEvolve with zigzagging cracks near the fracture site.