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Software system for calibrating examiners in cephalometric point identification.

机译:用于校准检查者的头颅测点识别软件系统。

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INTRODUCTION: The literature has shown that subjective concepts lead to interobserver variations in the definitions and identifications of cephalometric landmarks. Observers must be trained and calibrated to conduct scientific research using cephalometric comparisons. In this study, we aimed to develop and test a computational model called Cyclops cephalometry in radiographic cephalometry training and calibration. METHODS: This system uses the concepts of evaluation process managers, examiners, and testers, thus affording uniformity in cephalometric evaluations. The system was tested with 5 orthodontists and 5 postgraduate students who located 28 landmarks in 10 lateral cephalometric radiographs before and after training. RESULTS: Before training, the Student t test showed significant differences (P <0.05) in accuracy between the orthodontists and the students (71.4% and 54.9%, respectively). However, considerable improvement in accuracy was observed after training in both groups (86.5% and 83%, respectively), without significant differences (P = 0.30) between groups. Users of the system agreed about its usability aspects such as effectiveness, efficiency, and satisfaction. CONCLUSIONS: This model was shown to be a useful and efficient tool in the calibration process, and might be helpful in various comparative cephalometric investigations.
机译:简介:文献表明,主观观念导致颅脑测量界标的定义和识别中观察者之间的差异。必须对观察者进行培训和校准,以便使用头颅比较进行科学研究。在这项研究中,我们旨在开发和测试一种用于放射线头颅训练和校准的称为Cyclops头颅测量的计算模型。方法:该系统使用评估过程管理器,检查员和测试员的概念,从而在头颅测量评估中保持统一。该系统由5名正畸医生和5名研究生进行了测试,他们在训练前后在10副侧位X线片上定位了28个界标。结果:在训练之前,Student t检验显示出牙齿矫正医生和学生之间的准确性存在显着差异(P <0.05)(分别为71.4%和54.9%)。但是,两组训练后的准确性均得到了显着提高(分别为86.5%和83%),两组之间没有显着差异(P = 0.30)。系统用户同意其可用性方面,例如有效性,效率和满意度。结论:该模型在校准过程中被证明是一种有用且有效的工具,可能有助于各种比较性的头颅测量研究。

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