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体内评估电子耳孔定位器中使用的阻抗比法。

In vivo assessment of the impedance ratio method used in electronic foramen locators.

机构信息

Federal University of Technology - Paraná/CPGEI, Curitiba/PR, Brazil.

出版信息

Biomed Eng Online. 2010 Sep 6;9:46. doi: 10.1186/1475-925X-9-46.

Abstract

BACKGROUND

The results of an in vivo study on the "ratio method" used in electronic foramen locators (EFL) are presented. EFLs are becoming widely used in the determination of the working length (WL) during the root canal treatment. The WL is the distance from a coronal reference point to the point at which canal preparation and filling should terminate. The "ratio method" was assessed by many clinicians with the aim of determining its ability to locate the apical foramen (AF). Nevertheless, in vivo studies to assess the method itself and to explain why the "ratio method" is able to locate the apical foramen and is unable to determine intermediate distances were not published so far.

METHODS

A developed apparatus applies an electrical current signal with constant amplitude of 10 μARMS through the endodontic file within the root canal. The applied current signal is composed by summing six sine waves, from 250 Hz to 8 kHz. Data were acquired with the endodontic file tip at 7 different positions within root canals. In the frequency domain the quotients between the amplitude of a reference frequency and the amplitudes of the other frequencies components were calculated. Twenty one root canals were analyzed in vivo, during the endodontic treatment of twelve teeth of different patients, with age between 20 to 55 years.

RESULTS

For the range of frequencies used in the commercial EFLs and for distances ranging from -3 mm to -1 mm of the AF, the impedance of the root canal is mainly resistive. However, when the file tip gets closer to AF, the root canal electrical impedance starts to change from a mainly resistive to a complex impedance. This change in the measured root canal impedance starts when the file tip is near -1.0 mm from the AF, getting stronger as the file tip gets closer to the AF. This change in the impedance behavior affects the ratio (quotient) of the impedance measured at different frequencies. Through graphic analysis it is demonstrated why EFLs based on the ratio method are unable to accurately measure any distances between - 3.0 and -0.5 mm from the apical foramen. The only reliable measurement is the 0 mm distance, which is when the file tip is at the AF.

CONCLUSIONS

The electrical impedance values of 21 root canals were in vivo studied. The results confirm the ability of EFLs that are based on the ratio method to accurately locate the AF position and explain why they are unable to determine the file tip position along the root canal.

摘要

背景

本文呈现了一项电子根管定位仪(EFL)“比率法”的体内研究结果。EFL 越来越多地用于确定根管治疗过程中的工作长度(WL)。WL 是从冠方参考点到根管预备和填充应终止的点的距离。“比率法”已被许多临床医生评估,旨在确定其定位根尖孔(AF)的能力。然而,目前尚未发表体内研究评估该方法本身以及解释为什么“比率法”能够定位根尖孔而无法确定中间距离的研究。

方法

开发的设备通过根管内的根管锉应用恒定幅度为 10μARMS 的电流信号。施加的电流信号由六个从 250Hz 到 8kHz 的正弦波组成。在根管内的 7 个不同位置,用根管锉尖端采集数据。在频域中,计算参考频率幅度与其他频率分量幅度的比值。在十二名不同患者的十二颗牙齿的根管治疗期间,共对 21 颗根管进行了体内分析,年龄在 20 岁至 55 岁之间。

结果

对于商业 EFL 中使用的频率范围以及从 AF 处的-3mm 到-1mm 范围内的距离,根管的阻抗主要是电阻性的。然而,当锉尖更接近 AF 时,根管的电阻抗开始从主要的电阻性变为复阻抗。当锉尖接近 AF 时,这种测量的根管阻抗的变化开始发生,随着锉尖越来越接近 AF,这种变化变得更强。这种阻抗行为的变化会影响在不同频率下测量的阻抗比(商)。通过图形分析,证明了为什么基于比率法的 EFL 无法准确测量从根尖孔的-3.0mm 到-0.5mm 之间的任何距离。唯一可靠的测量是 0mm 距离,即锉尖位于根尖孔处。

结论

对 21 颗根管的阻抗值进行了体内研究。结果证实了基于比率法的 EFL 准确定位 AF 位置的能力,并解释了它们为什么无法确定沿根管锉尖端的位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f70b/2944265/f11991d90f19/1475-925X-9-46-1.jpg

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