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使用微计算机断层扫描评估机用镍钛器械在中度和重度弯曲根管中旋转和往复运动的效率:体外研究的系统评价。

Shaping Efficiency of Rotary and Reciprocating Kinematics of Engine-driven Nickel-Titanium Instruments in Moderate and Severely curved Root Canals Using Microcomputed Tomography: A Systematic Review of Ex Vivo Studies.

机构信息

Faculty of Dentistry, Department of Embryology, Carol Davila University of Medicine and Pharmacy, Bucharest, Romania.

Private Practice, Bucharest, Romania.

出版信息

J Endod. 2024 Jul;50(7):907-924. doi: 10.1016/j.joen.2024.03.009. Epub 2024 Mar 25.

Abstract

INTRODUCTION

This systematic review aimed to compare reciprocating with continuous rotary instrumentation kinematics, by means of microcomputed tomography evaluations, in extracted human permanent teeth with moderate and severe canal curvatures.

METHODS

The research protocol was registered in the International Prospective Register of Systematic Reviews and given the reference number CRD42023404035. An electronic search was undertaken in MEDLINE (PubMed), EBSCO, Scopus, Web of Science databases until December 2021. Manual screening of issues in endodontic journals and references of relevant articles were assessed individually. The risk of bias (RoB) of the included articles was evaluated with the QUIN tool (Quality Assessment Tool for In Vitro Studies).

RESULTS

Among 1640 retrieved articles, 49 were included in the qualitative synthesis. Fifteen articles had low RoB, 33 articles had medium RoB, and only 1 study was at high RoB. Continuous rotary systems had better centering ability in both moderate and severe canal curvatures and resulted in less apical transportation in severely curved root canals. None of the kinematic systems was capable of instrumenting the entire canal surface area. Reciprocating kinematics systems tended to provide higher increase in surface area of severely curved canals and produced fewer dentinal microcracks in moderately curved canals.

CONCLUSIONS

The evidence presented in this review suggests that continuous rotary system seems to be better than reciprocating system in solving the major issues encountered during root canal instrumentation of extracted teeth with moderate and severe curvatures.

摘要

简介

本系统评价旨在通过 microCT 评估,比较往复式与连续旋转器械在中度和重度弯曲根管的离体人恒牙中的运动学。

方法

研究方案在国际前瞻性系统评价注册库中注册,编号为 CRD42023404035。电子检索 MEDLINE(PubMed)、EBSCO、Scopus 和 Web of Science 数据库,检索时间截至 2021 年 12 月。单独评估牙髓学期刊中的问题和相关文章的参考文献的手动筛选。使用 QUIN 工具(体外研究质量评估工具)评估纳入文章的偏倚风险(RoB)。

结果

在检索到的 1640 篇文章中,有 49 篇纳入定性综合分析。15 篇文章的 RoB 较低,33 篇文章的 RoB 为中等,只有 1 篇研究的 RoB 较高。连续旋转系统在中度和重度弯曲根管中具有更好的中心定位能力,并且在重度弯曲根管中导致较少的根尖运输。没有任何运动学系统能够对整个根管表面进行器械处理。往复运动学系统在重度弯曲根管中似乎更有利于增加根管的表面积,并且在中度弯曲根管中产生较少的牙本质微裂纹。

结论

本综述中的证据表明,在解决中度和重度弯曲根管的离体牙根管器械处理中遇到的主要问题方面,连续旋转系统似乎优于往复系统。

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