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下颌磨牙中宫颈预扩对根尖锉大小确定的影响:扫描电镜分析

Influence of cervical preflaring on determination of apical file size in mandibular molars: SEM analysis.

作者信息

Schmitz Marcia da Silva, Santos Roberto, Capelli Alexandre, Jacobovitz Marcos, Spanó Júlio César Emboava, Pécora Jesus Djalma

机构信息

Federal University of Santa Maria, Santa Maria, RS, Brazil.

出版信息

Braz Dent J. 2008;19(3):245-51. doi: 10.1590/s0103-64402008000300013.

Abstract

This study investigated the influence of cervical preflaring with different rotary instruments on determination of the initial apical file (IAF) in mesiobuccal roots of mandibular molars. Fifty human mandibular molars whose mesial roots presented two clearly separated apical foramens (mesiobuccal and mesiolingual) were used. After standard access opening and removal of pulp tissue, the working length (WL) was determined at 1 mm short of the root apex. Five groups (n=10) were formed at random, according to the type of instrument used for cervical preflaring. In group 1, the size of the IAF was determined without preflaring of the cervical and middle root canal thirds. In groups 2 to 5, preflaring was performed with Gates-Glidden drills, ProTaper instruments, EndoFlare instruments and LA Axxes burs, respectively. Canals were sized manually with K-files, starting with size 08 K-files, inserted passively up to the WL. File sizes were increased until a binding sensation was felt at the WL and the size of the file was recorded. The instrument corresponding to the IAF was fixed into the canal at the WL with methylcyanoacrylate. The teeth were then sectioned transversally 1 mm short of the apex, with the IAF in position. Cross-sections of the WL region were examined under scanning electron microscopy and the discrepancies between canal diameter and the diameter of IAF were calculated using the tool "rule" (FEG) of the microscope's proprietary software. The measurements (microm) were analyzed statistically by Kruskal-Wallis and Dunn's tests at 5% significance level. There were statistically significant differences among the groups (p<0.05). The non-flared group had the greatest discrepancy (125.30 +/- 51.54) and differed significantly from all flared groups (p<0.05). Cervical preflaring with LA Axxess burs produced the least discrepancies (55.10 +/- 48.31), followed by EndoFlare instruments (68.20 +/- 42.44), Gattes Glidden drills (68.90 +/- 42.46) and ProTaper files (77.40 +/- 73.19). However, no significant differences (p>0.05) were found among the rotary instruments. In conclusion, cervical preflaring improved IAF fitting to the canals at the WL in mesiobuccal roots of maxillary first molars. The rotary instruments evaluated in this study did not differ from each other regarding the discrepancies produced between the IAF size and canal diameter at the WL.

摘要

本研究调查了使用不同旋转器械进行根管颈段预扩对下颌磨牙近中颊根初始根尖锉(IAF)确定的影响。使用了50颗人类下颌磨牙,其近中根有两个明显分开的根尖孔(近中颊侧和近中舌侧)。在进行标准开髓和去除牙髓组织后,将工作长度(WL)确定为根尖上方1mm处。根据用于根管颈段预扩的器械类型随机分为五组(n = 10)。第1组在不进行根管颈段和中1/3预扩的情况下确定IAF的大小。第2至5组分别使用Gates - Glidden钻、ProTaper器械、EndoFlare器械和LA Axxes车针进行预扩。使用K锉手动测量根管大小,从08号K锉开始,被动插入至WL。逐渐增加锉的型号,直到在WL处感觉到有卡紧感,并记录锉的型号。将对应IAF的器械用氰基丙烯酸甲酯固定在WL处的根管内。然后在根尖上方1mm处横向切断牙齿,使IAF处于原位。在扫描电子显微镜下检查WL区域的横截面,并使用显微镜专用软件的“规则”(FEG)工具计算根管直径与IAF直径之间的差异。测量值(微米)采用Kruskal - Wallis检验和Dunn检验进行统计学分析,显著性水平为5%。各组之间存在统计学显著差异(p < 0.05)。未预扩组的差异最大(125.30 ± 51.54),与所有预扩组均有显著差异(p < 0.05)。使用LA Axxes车针进行根管颈段预扩产生的差异最小(55.10 ± 48.31),其次是EndoFlare器械(68.20 ± 42.44)、Gates Glidden钻(68.90 ± 42.46)和ProTaper锉(77.40 ± 73.19)。然而,在旋转器械之间未发现显著差异(p > 0.05)。总之,根管颈段预扩改善了上颌第一磨牙近中颊根在WL处IAF与根管的适配性。本研究中评估的旋转器械在WL处IAF大小与根管直径之间产生的差异方面彼此无差异。

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