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      Effect of Different Electroconductive Root Canal Irrigations on the Accuracy of Different Apex Locators: An In Vitro Comparative Study

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          A BSTRACT

          Aim:

          An accurate working length (WL) estimation is fundamental to a successful endodontic therapy. The objective of this comparative in vitro research was to investigate the performance of iPex II and the Root ZX Mini electronic apex locators (EALs) in measuring root canal WL with different irrigant solutions and their relation to the electrical conductivity of irrigation solutions.

          Materials and Methods:

          Seventy sound permanent lower premolar teeth, each with a single root and developed apices, were used. Under an X15 stereomicroscope, the real working length was determined with the aid of a #10 file. After that, teeth were placed into an alginate model, and the iPex II and Root ZX Mini were used for the detection of electronic working length with various irrigants. Seventy teeth were randomly distributed into seven groups, 10 per each group (group I: dry canal; group II: distilled water; group III: ozonated water; group IV: 5% sodium hypochlorite (NaOCl); group V: 2% chlorhexidine, group VI: 17% ethylenediaminetetraacetic acid (EDTA) solution, and group VII: 17% EDTA gel). The difference in WL was calculated by deducting real working length from its electronic working length. The study also evaluates the electrical conductivity of the seven endodontic irrigant solutions. The two-way analysis of variance (ANOVA) test was used for statistical analysis.

          Results:

          Statistically, neither both types of EALs ( P = 0.088) nor various irrigating solutions with varying electrical conductivities ( P = 0.099) significantly affect the accuracy of EL estimation.

          Conclusions:

          There were no significant differences between the accuracy of the Root ZX Mini and the iPex II. The accuracy of both apex locators is unaffected in the presence of various irrigation solutions with varying electrical conductivities in this research.

          G RAPHICAL A BSTRACT

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          Most cited references42

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          Sample size determination and power analysis using the G*Power software

          Hyun Kang (2021)
          Appropriate sample size calculation and power analysis have become major issues in research and publication processes. However, the complexity and difficulty of calculating sample size and power require broad statistical knowledge, there is a shortage of personnel with programming skills, and commercial programs are often too expensive to use in practice. The review article aimed to explain the basic concepts of sample size calculation and power analysis; the process of sample estimation; and how to calculate sample size using G*Power software (latest ver. 3.1.9.7; Heinrich-Heine-Universität Düsseldorf, Düsseldorf, Germany) with 5 statistical examples. The null and alternative hypothesis, effect size, power, alpha, type I error, and type II error should be described when calculating the sample size or power. G*Power is recommended for sample size and power calculations for various statistical methods (F, t, χ 2 , Z, and exact tests), because it is easy to use and free. The process of sample estimation consists of establishing research goals and hypotheses, choosing appropriate statistical tests, choosing one of 5 possible power analysis methods, inputting the required variables for analysis, and selecting the “calculate” button. The G*Power software supports sample size and power calculation for various statistical methods (F, t, χ 2 , z, and exact tests). This software is helpful for researchers to estimate the sample size and to conduct power analysis.
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            • Record: found
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            A comparison of canal preparations in straight and curved root canals.

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              Antimicrobial effect of ozonated water on bacteria invading dentinal tubules.

              Ozone is known to act as a strong antimicrobial agent against bacteria, fungi, and viruses. In the present study, we examined the effect of ozonated water against Enterococcus faecalis and Streptcoccus mutans infections in vitro in bovine dentin. After irrigation with ozonated water, the viability of E. faecalis and S. mutans invading dentinal tubules significantly decreased. Notably, when the specimen was irrigated with sonication, ozonated water had nearly the same antimicrobial activity as 2.5% sodium hypochlorite (NaOCl). We also compared the cytotoxicity against L-929 mouse fibroblasts between ozonated water and NaOCl. The metabolic activity of fibroblasts was high when the cells were treated with ozonated water, whereas that of fibroblasts significantly decreased when the cells were treated with 2.5% NaOCl. These results suggest that ozonated water application may be useful for endodontic therapy.
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                Author and article information

                Journal
                J Int Soc Prev Community Dent
                J Int Soc Prev Community Dent
                JISPCD
                J Int Soc Prevent Communit Dent
                Journal of International Society of Preventive & Community Dentistry
                Wolters Kluwer - Medknow (India )
                2231-0762
                2250-1002
                May-Jun 2024
                27 June 2024
                : 14
                : 3
                : 211-217
                Affiliations
                [1]Department of Conservative Dentistry, College of Dentistry, University of Mosul, Mosul, Iraq
                Author notes
                Address for correspondence: Dr. Eman M. Yahya, Department of Conservative Dentistry, College of Dentistry, University of Mosul, Al-Majmoaa Street, Mosul 41002, Iraq. E-mail: dremanmohammad@ 123456uomosul.edu.iq
                Article
                JISPCD-14-211
                10.4103/jispcd.jispcd_192_23
                11268530
                39055293
                700c431f-34c4-48f7-9114-a79de14978cc
                Copyright: © 2024 Journal of International Society of Preventive and Community Dentistry

                This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.

                History
                : 28 November 2023
                : 29 February 2024
                : 04 March 2024
                Categories
                Original Article

                apex locator,irrigation solutions,root canal,working length

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