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四种电子根尖定位仪测量距根尖孔距离的准确性。

Effectiveness of four electronic apex locators to determine distance from the apical foramen.

机构信息

Department of Operative Dentistry and Endodontics, Dental School, Philipps University of Marburg, Germany.

出版信息

Int Endod J. 2010 Sep;43(9):808-17. doi: 10.1111/j.1365-2591.2010.01765.x. Epub 2010 Aug 3.

Abstract

AIM

To evaluate the accuracy of four electronic apex locators (EAL) in the apical region (0-3 mm short of the foramen) and to compare the precision of the readings on the display with the real position of the file in the root canal.

METHODOLOGY

Twenty single-rooted extracted teeth with round root canals were used. The canal orifices were preflared, and the length to the major foramen was determined visually under a microscope. Canals were enlarged, so that a size 15 file fitted well inside the canal. Teeth were mounted in acrylic test tubes filled with physiologic saline solution. Electronic length was determined in the region between the major foramen and 3 mm short of it in 0.5 mm steps with the Dentaport ZX, Root ZX mini, Elements Diagnostic Unit and Apex Locator and Raypex 5 using files of size 10 and size 15. The data were analysed using linear regression between true length and EAL reading, Bland-Altman plots and nonparametric tests at a significance level of alpha = 0.05.

RESULTS

The major foramen was detected by all EALs. With a measurement file positioned directly at the major foramen, meter readings were equivalent to a position 0.01-0.38 mm away. For the Dentaport ZX, a better accuracy using the size 15 file for the area 0-1.5 mm short of the apex was found. The differences in measurements between the two files were smaller for the other EALs. In linear regression, a good linearity for Dentaport ZX and Root ZX mini and moderate linearity for Elements Diagnostic Unit and Apex Locator and Raypex 5 were found. The slope of the measurement curve was too low (0.37-0.57) for the Raypex 5 and almost optimal for the Dentaport ZX (1.01-1.05). The Root ZX mini and the Elements Obturation Unit produced lower slope values and especially the Elements Obturation Unit revealed much higher SDs at the different measurement levels.

CONCLUSION

Amongst the four EALs, the Dentaport ZX and Root ZX mini had the best agreement between true lengths and meter readings. For the Raypex 5, an interpretation of the colour-coded zones as distance to the foramen cannot be recommended and might lead to erroneous interpretations.

摘要

目的

评估四种电子根尖定位仪(EAL)在根尖区(距根尖孔 0-3mm 范围内)的准确性,并比较显示读数的精度与根管内器械实际位置的吻合程度。

方法

本研究使用 20 颗具有圆形根管的单根离体牙。根管口预扩锉,在显微镜下目视确定至根尖孔的长度。根管预备至 15 号锉能够顺利进入根管。将牙齿固定在充满生理盐水的丙烯酸测试管中。使用 10 号和 15 号锉,以 0.5mm 的间隔在距根尖孔 0-3mm 的范围内,通过 Dentaport ZX、Root ZX mini、Elements Diagnostic Unit 和 Apex Locator 以及 Raypex 5 电子根尖定位仪确定电子长度。使用真实长度与 EAL 读数之间的线性回归、Bland-Altman 图和非参数检验对数据进行分析,检验水准设为 0.05。

结果

所有 EAL 都能探测到根尖孔。当测量锉位于根尖孔处时,读数与距离根尖孔 0.01-0.38mm 处的位置相当。对于 Dentaport ZX,在距根尖 0-1.5mm 的范围内使用 15 号锉时,测量结果的准确性更高。对于其他三种 EAL,两种锉之间的测量差值较小。在线性回归中,Dentaport ZX 和 Root ZX mini 的线性关系较好,Elements Diagnostic Unit 和 Apex Locator 以及 Raypex 5 的线性关系为中等。Raypex 5 的测量曲线斜率较低(0.37-0.57),而 Dentaport ZX 的斜率几乎为最佳(1.01-1.05)。Root ZX mini 和 Elements Obturation Unit 的斜率值较低,尤其是 Elements Obturation Unit 在不同的测量水平上显示出更高的标准差。

结论

在这四种 EAL 中,Dentaport ZX 和 Root ZX mini 的真实长度与读数之间的一致性最好。对于 Raypex 5,不建议将彩色编码区域解释为距离根尖孔的距离,因为这可能导致错误的解释。

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