Jiang Yuan-Yuan, Sun Lian, Wang Hua, Zhao Chun-Yang, Zhang Wei-Bing
Jiangsu Key Laboratory of Oral Disease, Nanjing Medical University, Nanjing, China.
Department of Orthodontics, Affiliated Hospital of Stomatology, Nanjing Medical University, Nanjing, China.
Korean J Orthod. 2020 Mar;50(2):86-97. doi: 10.4041/kjod.2020.50.2.86. Epub 2020 Mar 24.
To propose a three-dimensional (3D) method for evaluating temporomandibular joint (TMJ) changes during Twin-block treatment.
Seventeen patients with Class II division 1 malocclusion treated using Twin-block and nine untreated patients with a similar malocclusion were included in this research. We collected their cone beam computed tomography (CBCT) data from before and 8 months after treatment. Segmentations were constructed using ITK-SNAP. Condylar volume and superficial area were measured using 3D Slicer. The 3D landmarks were identified on CBCT images by using Dolphin software to assess the condylar positional relationship. 3D models of the mandible and glenoid fossa of the patients were constructed and registered via voxel-based superimposition using 3D Slicer. Thereafter, skeletal changes could be visualized using 3DMeshMetric in any direction of the superimposition on a color-coded map. All the superimpositions were measured using the same scale on the distance color-coded map, in which red color represents overgrowth and blue color represents resorption.
Significant differences were observed in condylar volume, superficial area, and condylar position in both groups after 8 months. Compared with the control group (CG), the Twin-block group exhibited more obvious condyle-fossa modifications and joint positional changes. Moreover, on the color-coded map, more obvious condyle-fossa modifications could be observed in the posterior and superior directions in the Twin-block group than in the CG.
We successfully established a 3D method for measuring and evaluating TMJ changes caused by Twin-block treatment. The treatment produced a larger condylar size and caused condylar positional changes.
提出一种用于评估双期阻断矫治器治疗过程中颞下颌关节(TMJ)变化的三维(3D)方法。
本研究纳入了17例使用双期阻断矫治器治疗的安氏II类1分类错牙合患者和9例未经治疗的类似错牙合患者。我们收集了他们治疗前及治疗8个月后的锥形束计算机断层扫描(CBCT)数据。使用ITK-SNAP进行分割。使用3D Slicer测量髁突体积和表面积。通过使用Dolphin软件在CBCT图像上识别3D标志点,以评估髁突的位置关系。使用3D Slicer通过基于体素的叠加构建患者下颌骨和关节窝的3D模型并进行配准。此后,可使用3DMeshMetric在叠加的任何方向上在彩色编码图上可视化骨骼变化。在距离彩色编码图上使用相同比例测量所有叠加情况,其中红色表示过度生长,蓝色表示吸收。
8个月后两组的髁突体积、表面积和髁突位置均观察到显著差异。与对照组(CG)相比,双期阻断矫治器组表现出更明显的髁突-关节窝改变和关节位置变化。此外,在彩色编码图上,双期阻断矫治器组在后方和上方方向观察到比CG组更明显的髁突-关节窝改变。
我们成功建立了一种用于测量和评估双期阻断矫治器治疗引起的TMJ变化的3D方法。该治疗使髁突尺寸增大并导致髁突位置改变。