Angle Orthod. 2018 Jul;88(4):397-402. doi: 10.2319/091117-611.1. Epub 2018 Mar 21.
The objective of this study was to develop a reproducible method to measure the change of palatal volume and area through superimposition using maxillary expansion digital cast models.
A total of 10 pre- and 10 postexpansion dental cast models were scanned by the same cone-beam computed tomography machine. Superimposition was performed using a fully automated surface-best fit of the palatal surfaces on the digital cast models. A gingival plane, identified only once on superimposed casts, and a distal plane with the lateral closing border and the palatal surface were used to localize this selection of air. Area and volume were calculated for pre- and postexpansion records. Pre- and postexpansion palatal volume and area were measured by the main investigator and three different observers for inter- and intra-observer reproducibility assessment.
The level of intra- and inter-observer agreement was very strong (intraclass correlation coefficients ≥ 0.953; P value < .0001) for all measurements.
Palatal volume and area measurements based on the proposed superimposition are reproducible and can be used reliably.
本研究旨在开发一种可通过上颌扩弓数字模型叠加来测量腭部容积和面积变化的重现性方法。
共扫描 10 个扩弓前和 10 个扩弓后牙模,使用同一台锥形束 CT 机进行。通过腭表面的全自动表面最佳拟合进行叠加,在叠加模型上仅识别一次牙龈平面和带有侧闭合边缘和腭表面的远平面,以定位该空气选择。为扩弓前和扩弓后记录计算面积和体积。主要研究者和三位不同的观察者对腭部容积和面积进行了扩弓前和扩弓后的测量,以评估观察者间和观察者内的可重复性。
所有测量的观察者内和观察者间的一致性水平均非常强(组内相关系数≥0.953;P 值<0.0001)。
基于所提出的叠加方法的腭部容积和面积测量具有可重复性,可以可靠地使用。