| Literature DB >> 25887521 |
Berkan Celikten1, Ceren Feriha Uzuntas2, Sebnem Kursun3, Ayse Isil Orhan4, Pelin Tufenkci5, Kaan Orhan6, Kemal Özgür Demiralp7.
Abstract
BACKGROUND: We evaluated and compared the effects of different NiTi rotary systems--ProTaper Next and New One Shape--on the volume of dentin removed, canal transportation, and canal curvature in extracted human teeth using CBCT scanning with different voxel sizes.Entities:
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Year: 2015 PMID: 25887521 PMCID: PMC4358850 DOI: 10.1186/s12903-015-0019-5
Source DB: PubMed Journal: BMC Oral Health ISSN: 1472-6831 Impact factor: 2.757
Figure 1Teeth were scanned at 96 kVp and 12 mA at two resolutions: (a) 0.125-mm voxel size and (b) 0.100-mm voxel size.
Figure 2Pre- and post-instrumented measurements were made in the mesial and distal directions on cross-section planes from the apical end of the root at levels of (a) 2 mm, (b) 5 mm, and (c) 8 mm.
Figure 3Three-dimensional CBCT images showing the measurement of root curvature.
Figure 4Three-dimensionally using the 3D Invivo software (ver. 5.1.2., Anatomage, San Jose, CA). a,b. 3D reconstruction of tooth, c. subtracted root canal, d. The volume of the root canal was measured.
Mean and standard deviation values of transportation (mm) at different canal levels with two voxel sizes
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| 2 mm | ProTaper Next | 24 | 0.10a | 0.09 | 0.815 |
| New One Shape | 22 | 0.10b | 0.08 | ||
| 5 mm | ProTaper Next | 24 | 0.12 | 0.08 | 0.659 |
| New One Shape | 22 | 0.14 | 0.09 | ||
| 8 mm | ProTaper Next | 24 | 0.18a | 0.10 | 0.672 |
| New One Shape | 22 | 0.17b | 0.09 | ||
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| 2 mm | ProTaper Next | 24 | 0.10c | 0.09 | 0.572 |
| New One Shape | 22 | 0.11d | 0.09 | ||
| 5 mm | ProTaper Next | 24 | 0.11 | 0.08 | 0.778 |
| New One Shape | 22 | 0.11 | 0.07 | ||
| 8 mm | ProTaper Next | 24 | 0.17c | 0.12 | 0.625 |
| New One Shape | 22 | 0.18d | 0.11 |
Same letters indicates statistical significance p < 0.05.
Mean and standard deviation values of curvature and removed dentin volume with two voxel sizes
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| Pre-instrumentation | ProTaper Next | 24 | 24.9 | 24.0 | 3.9 | 0.668 |
| New One Shape | 22 | 23.2 | 23.0 | 2.8 | ||
| Post-instrumentation | ProTaper Next | 24 | 22.4 | 21.2 | 3.3 | 0.620 |
| New One Shape | 22 | 22.1 | 21.6 | 2.9 | ||
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| Pre-instrumentation (mm3) | ProTaper Next | 24 | 9.5 | 9.0 | 1.7 | 0.578 |
| New One Shape | 22 | 9.5 | 9.9 | 1.5 | ||
| Post-instrumentation (mm3) | ProTaper Next | 24 | 13.2 | 11.8 | 2.7 | 0.421 |
| New One Shape | 22 | 12.9 | 11.6 | 1.9 | ||
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| Pre-instrumentation | ProTaper Next | 24 | 24.6 | 24.0 | 3.8 | 0.518 |
| New One Shape | 22 | 24.1 | 23.8 | 3.2 | ||
| Post-instrumentation | ProTaper Next | 24 | 22.8 | 21.9 | 3.6 | 0.648 |
| New One Shape | 22 | 22.2 | 21.6 | 3.0 | ||
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| Pre-instrumentation (mm3) | ProTaper Next | 24 | 9.6 | 9.0 | 1.9 | 0.528 |
| New One Shape | 22 | 9.7 | 10.0 | 1.6 | ||
| Post-instrumentation (mm3) | ProTaper Next | 24 | 13.5 | 12.0 | 3.1 | 0.454 |
| New One Shape | 22 | 12.3 | 11.5 | 1.7 | ||
Mean values of two rotary systems regarding angle curvature and root canal volumes with different voxel values
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| Pre-instrumentation | 0.100 mm3 | 23 | 24.3 | 23.9 | 3.5 | 0.418 |
| 0.125 mm3 | 23 | 24.0 | 23.5 | 3.4 | ||
| Post-instrumentation | 0.100 mm3 | 23 | 22.5 | 21.8 | 3.3 | 0.798 |
| 0.125 mm3 | 23 | 22.3 | 21.4 | 3.1 | ||
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| Pre-instrumentation (mm3) | 0.100 mm3 | 23 | 9.7 | 10.0 | 1.7 | 0.677 |
| 0.125 mm3 | 23 | 9.6 | 9.0 | 1.9 | ||
| Post-instrumentation (mm3) | 0.100 mm3 | 23 | 13.0 | 12.0 | 2.6 | 0.908 |
| 0.125 mm3 | 23 | 12.9 | 11.0 | 2.6 |