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Reliability of different three-dimensional cephalometric landmarks in cone-beam computed tomography: A systematic review

机译:锥形束计算机断层扫描中不同三维头颅界标的可靠性:系统综述

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Objectives: Conventional two-dimensional (2D) cephalometric radiography is an integral part of orthodontic patient diagnosis and treatment planning. One must be mindful of its limitations as it indeed is a 2D representation of a vaster three-dimensional (3D) object. Issues with projection errors, landmark identification, and measurement inaccuracies impose significant limitations, which may now be overcome with the advent of cone-beam computed tomography (CBCT). A systematic review of the reliability of different 3D cephalometric landmarks in CBCT imaging was conducted. Materials and Methods: Electronic database searches were administered until October 2017 using PubMed, MEDLINE via OvidSP, EBMR and EMBASE via OvidSP, Scopus, and Web of Science. Google Scholar was used as an adjunctive search tool. Results: Thirteen articles considering CBCT scans of human subjects from preexisting data sets were selected and reviewed. Most of the studies had methodological limitations and were of moderate quality. Because of their heterogeneity, key data from each could not be combined and were reported qualitatively. Overall, in 3D, midsagittal plane landmarks demonstrated greater reliability compared with bilateral landmarks. A minimum number of dental landmarks were reported, although most were recommended for use. Conclusions: Further research is required to evaluate the reliability of 3D cephalometric landmarks when evaluating 3D craniofacial complexes.
机译:目标:常规二维(2D)头颅射线照相术是正畸患者诊断和治疗计划的组成部分。必须意识到它的局限性,因为它确实是一个更大的三维(3D)对象的2D表示。投影误差,界标识别和测量不准确的问题具有明显的局限性,现在可以通过锥形束计算机断层扫描(CBCT)的出现来克服。对CBCT成像中不同3D头颅界标的可靠性进行了系统回顾。资料和方法:截至2017年10月,使用PubMed,MEDLINE(通过OvidSP),EBMR和EMBASE(通过OvidSP,Scopus和Web of Science)进行电子数据库搜索。 Google学术搜索被用作辅助搜索工具。结果:选择和审查了十三篇考虑对来自现有数据集的人类受试者进行CBCT扫描的文章。大多数研究都存在方法学局限性,质量中等。由于它们的异质性,因此无法合并来自每个关键数据的定性报告。总体而言,在3D模式下,与双侧标志相比,中矢状平面标志具有更高的可靠性。尽管推荐使用大多数牙齿,但据报道牙痕最少。结论:在评估3D颅面复合体时,需要进一步的研究来评估3D头颅界标的可靠性。

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