锥束计算机断层扫描评估上颌磨牙分叉累及
。

Jie Zhu, Ouyang Ying Xiang
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引用次数: 8

摘要

目的评价锥形束计算机断层扫描(CBCT)定量评估上颌磨牙分叉受累(FI)的4个参数的可重复性。方法对21颗上颌磨牙的39个ⅱFI度部位进行探查。根据CBCT数据评估这些部位的FI程度。在这些样本中,测量了CBCT图像中定量评估FI的四个参数。参数包括分叉入口水平骨损失(HBL)、最大HBL (HBL-max)、最大垂直骨损失(VBL-max)和根干长度(RT)。对测量结果的再现性进行了评价。结果经探查分类的39度ⅱ型FI中,CBCT确诊率仅为17.9%。其余46.2%为“穿透性”缺损,15.4%为融合根,20.5%为I度FI。所有四个参数的观察者内重复性都很高,HBL的类内相关系数(ICC)为0.960,HBL-max为0.992,VBL-max为0.987,rt为0.983。两名观察者的ICCs也很高(ICCs: 0.873至0.947)。本研究提出的参数及相关测量方法具有较高的重复性。CBCT图像为评估上颌磨牙FI提供了更多的细节。结论本研究建立的参数及相关测量方法具有较高的重复性。CBCT图像为评估上颌磨牙FI提供了更多的细节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing Maxillary Molar Furcation Involvement 
by Cone Beam Computed Tomography.
OBJECTIVE To evaluate the reproducibility of four parameters for quantitatively assessing maxillary molar furcation involvement (FI) by cone beam computed tomography (CBCT). METHODS Thirty-nine sites with degree II FI, classified by probing of 21 maxillary molars, were investigated. Degrees of FI in these sites were assessed based on CBCT data. In these samples, four parameters for quantitatively assessing FI in CBCT images were measured. The parameters included horizontal bone loss at furcation entrance level (HBL), maximum HBL (HBL-max), maximum vertical bone loss (VBL-max) and root trunk length (RT). The reproducibility of the measurements was evaluated. RESULTS Amongst the 39 degree II FI classified by probing, only 17.9% were confirmed by CBCT. The other 46.2% were 'through and through' defects, 15.4% were fused roots and 20.5% were degree I FI in the CBCT image. The intraobserver repeatability for all four parameters was high, with intraclass correlation coefficients (ICC) of 0.960 for HBL, 0.992 for HBL-max, 0.987 for VBL-max and 0.983 for RT. The ICCs for two observers was also high (ICCs: 0.873 to 0.947). The parameters and related methods of measurements proposed in the study showed high reproducibility. CBCT images provided more details in assessing maxillary molar FI. CONCLUSION The parameters and related methods of measurements developed in this study showed high reproducibility. CBCT images provide more details in assessing maxillary molar FI.
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