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  • Morphological analysis of apical foramen over-instrumented by three rotary NiTi systems.

Morphological analysis of apical foramen over-instrumented by three rotary NiTi systems.

The Chinese journal of dental research : the official journal of the Scientific Section of the Chinese Stomatological Association (CSA) (2014-12-23)
Zong Xiang Liu, Yi Liu, Jeffrey Ww Chang, Chang Yong Yuan, Cheng Fei Zhang, Peng Lai Wang
ABSTRACT

To evaluate morphological changes of the apical surface after root canal preparation with 1 mm beyond the apical foramen using ProTaper Universal (PTU) files, K3 files and Twisted files (TF), respectively. Seventy teeth with a centered apical foramen and 70 teeth with a deviated apical foramen were included as group A and group B respectively. In each group, 20 teeth were randomly assigned for root canal preparation with PTU, K3 and TF files, respectively; the remaining 10 teeth were used as the control group without any preparation. The apical foramens were examined with scanning electronic microscopy. The foramen integrity damage (FID) and dentin defects (DDs) were noted and compared between different groups. FID and DD were significantly less in Group A. DDs was not found in the control group. Preparation with PTU, K3, and TF files caused FID in 6.67%, 10%, and 3.33% of teeth in the group A, and in 20%, 26.67%, and 10% in Group B, respectively. Preparation with PTU, K3, and TF files caused DD in 6.67%, 6.67%, and 3.33% of teeth in Group A, and in 23.33%, 26.67%, and 6.67% in Group B, respectively. PTU and K3 files produced more DDS than TF files. However, no significant difference was found between groups using PTU and K3 files. Rotary instrumentation caused less damage on the apical surface in foramencentered root canals than foramen-deviated root canals when working beyond the canal length. TF files had a tendency to produce less DDS compared with PTU or K3 files during over-instrumented root canals.

MATERIALS
Product Number
Brand
Product Description

Nickel, foil, light tested, 25x25mm, thickness 0.009mm, 99.95%
Nickel, rod, 100mm, diameter 3.3mm, 99.99+%
Nickel, foil, not light tested, 100x100mm, thickness 0.004mm, hard, 99%
Nickel, foil, 5m coil, thickness 0.025mm, annealed, 99%
Nickel, foil, 5m coil, thickness 0.05mm, annealed, 99%
Titanium, wire reel, 100m, diameter 1.0mm, annealed, 99.6+%
Titanium, wire reel, 1m, diameter 0.25mm, as drawn, 99.99+%
Nickel, foil, 4mm disks, thickness 0.50mm, annealed, 99%
Nickel, foil, 5m coil, thickness 0.05mm, coil width 2mm, annealed, 99%
Nickel, foil, 4mm disks, thickness 0.5mm, annealed, 99.98%
Titanium, wire reel, 1m, diameter 0.5mm, as drawn, 99.6+%
Nickel, foil, 4mm disks, thickness 0.20mm, annealed, 99%
Nickel, foil, 5m coil, thickness 0.075mm, annealed, 99%
Nickel, foil, 50mm disks, thickness 0.25mm, annealed, 99%
Titanium, wire reel, 10m, diameter 0.125mm, annealed, 99.6+%
Nickel, foil, 50mm disks, thickness 0.01mm, 99.95%
Nickel, foil, 50mm disks, thickness 0.038mm, 99.9%
Nickel, foil, 50mm disks, thickness 0.0075mm, 99.9%
Nickel, foil, 5m coil, thickness 0.003mm, 99.95%
Titanium, wire reel, 1m, diameter 0.5mm, as drawn, 99.99+%
Nickel, foil, 50mm disks, thickness 0.125mm, as rolled, 99.99+%
Titanium, wire reel, 100m, diameter 0.75mm, as drawn, 99.6+%
Titanium, wire reel, 0.5m, diameter 0.25mm, as drawn, 99.99+%
Titanium, tube, 500mm, outside diameter 2.03mm, inside diameter 1.63mm, wall thickness 0.2mm, annealed, 99.6+%
Nickel, foil, 4mm disks, thickness 0.25mm, annealed, 99%
Titanium, tube, 500mm, outside diameter 6.35mm, inside diameter 4.57mm, wall thickness 0.89mm, annealed, 99.6+%
Titanium, tube, 500mm, outside diameter 2.03mm, inside diameter 1.55mm, wall thickness 0.24mm, annealed, 99.6+%
Titanium, wire reel, 1m, diameter 0.25mm, as drawn, 99.6+%
Nickel, foil, 50mm disks, thickness 0.03mm, 99.9%
Titanium, tube, 500mm, outside diameter 25.4mm, inside diameter 23.62mm, wall thickness 0.89mm, annealed, 99.6+%