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首页> 外文期刊>The Angle orthodontist. >Accuracy of a cone beam computed tomography–guided surgical stent for orthodontic mini-implant placement
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Accuracy of a cone beam computed tomography–guided surgical stent for orthodontic mini-implant placement

机译:锥形束CT引导下的手术支架在正畸微型种植体植入中的准确性

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Objective: To validate the accuracy of a cone-beam computed tomography (CBCT)–guided surgical stent for orthodontic mini-implant (OMI) placement by quantitatively evaluating the difference between CBCT-prescribed and actual position of mini-implants in preoperative and postoperative CBCT images. Materials and Methods: A surgical stent was fabricated using Teflon-Perfluoroalkoxy, which has appropriate biological x-ray attenuation properties. Polyvinylsiloxane impression material was used to secure the custom-made surgical stent onto swine mandibles. CBCT scanning was done with the stent in place to virtually plan mini-implants using a three-dimensional (3D) software program. An appropriate insertion point was determined using 3D reconstruction data, and the vertical and horizontal angulations were determined using four prescribed angles. A custom-designed surveyor was used to drill a guide hole within the surgical stent as prescribed on the CBCT images for insertion of 32 OMIs. The mandibles with a surgical stent in place were rescanned with CBCT to measure the deviations between the virtual planning data and surgical results. Results: The difference between the prescribed and actual vertical angle was 1.01 ± 7.25, and the horizontal difference was 1.16 ± 6.08. The correlation coefficient confirms that there was no intrarater variability in either the horizontal (R = .97) or vertical (R = .74) vectors. Conclusions: The surgical stent in this study guides mini-implants to the prescribed position as planned in CBCT. Since the statistical difference was not significant, the surgical stent can be considered to be an accurate guide tool for mini-implant placement in clinical use.
机译:目的:通过定量评估术前和术后CBCT规定的CBCT处方和实际位置之间的差异,验证锥束计算机断层扫描(CBCT)引导的正畸微型种植体(OMI)植入手术支架的准确性图片。材料和方法:使用特氟隆-全氟烷氧基制造外科支架,该支架具有适当的生物X射线衰减特性。使用聚乙烯基硅氧烷印模材料将定制的手术支架固定在猪下颌骨上。使用三维(3D)软件程序在支架就位的情况下进行CBCT扫描,以虚拟地计划微型植入物。使用3D重建数据确定适当的插入点,并使用四个指定角度确定垂直和水平角度。按照CBCT图像上的规定,使用了定制设计的测量员在手术支架内钻了一个导向孔,用于插入32个OMI。使用CBCT重新扫描放置有手术支架的下颌骨,以测量虚拟计划数据和手术结果之间的偏差。结果:规定的和实际的垂直角之差为1.01±7.25,水平之差为1.16±6.08。相关系数证实水平(R = .97)或垂直(R = .74)向量中均不存在评分内变异性。结论:本研究中的外科手术支架将微型植入物按照CBCT计划引导至规定位置。由于统计差异不显着,因此可以将手术支架视为临床上微型植入物放置的准确指导工具。

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