Arshad Mahnaz, Asgari Amirmohsen, Kharazifard Mohamad Javad, Ameri Narges
Dental Research Center, Dentistry Research Institute, Tehran University of Medical Sciences, Tehran, Po. Code: 14399-55991, Iran.
Department of Prosthodontics, School of Dentistry, International Campus, Tehran University of Medical Sciences, Tehran, Po. Code:14399-55991, Iran.
Int J Dent. 2022 Jan 25;2022:8634091. doi: 10.1155/2022/8634091. eCollection 2022.
This study aimed to assess the effect of implant angulation on the rotational displacement of a 3-unit bridge following a digital impression.
This in vitro experimental study evaluated 3 master models of the maxilla with Kennedy's class III partial edentulism and bilateral three-unit implant-supported fixed partial dentures. Two implants were placed with 0° (first model), 15° (second model), and 30° (third model) interimplant angles. The implants were placed bilaterally at the sites of first premolars and first molars from the posterior towards the anterior region and coded A (posterior) and B (anterior) in the left, and C (posterior) and D (anterior) in the right side. Next, their position was recorded using a coordinate measuring machine to serve as a reference. The models were then scanned by both 3Shape and Sirona digital scanners (12 times by each scanner). The obtained data were compared with the reference data three-dimensionally using GOM Inspect software to determine the rotational displacement of the implants. Data were analyzed by repeated-measures ANOVA, one-way ANOVA, paired sample -test, and independent sample -test ( < 0.05).
Since repeated-measures ANOVA showed that the interaction effect was significant ( = 0.010), the data were analyzed by subgroup analysis. The 3Shape scanner showed significantly higher accuracy for C-D region in model 2 ( = 0.001), and A-B region in model 1 ( ≤ 0.01). In the use of the 3Shape scanner, model 3 showed a lower error rate in the A-B region, compared with models 1 and 2. Model 1 showed higher error rate than models 2 and 3 in the C-D region ( ≤ 0.01). In the use of the Sirona scanner, model 1 showed a higher error rate than models 2 ( = 0.031) and 3 ( = 0.004) in the C-D region.
In digital impressions of angulated implants in 3-unit bridges by using 3Shape and Sirona scanners, the rotational error decreases as the interimplant angle increases.
本研究旨在评估种植体角度对数字化印模后三单位桥旋转位移的影响。
本体外实验研究评估了3个上颌骨主模型,均为肯氏Ⅲ类牙列缺损且双侧为三单位种植支持固定局部义齿。植入两颗种植体,种植体间角度分别为0°(第一个模型)、15°(第二个模型)和30°(第三个模型)。种植体双侧从前向后分别植入第一前磨牙和第一磨牙的位置,左侧标记为A(后部)和B(前部),右侧标记为C(后部)和D(前部)。接下来,使用坐标测量机记录它们的位置作为参考。然后,使用3Shape和西诺德数字扫描仪对模型进行扫描(每个扫描仪扫描12次)。使用GOM Inspect软件将获得的数据与参考数据进行三维比较,以确定种植体的旋转位移。数据采用重复测量方差分析、单因素方差分析、配对样本检验和独立样本检验进行分析(P<0.05)。
由于重复测量方差分析显示交互作用显著(P = 0.010),因此通过亚组分析对数据进行分析。3Shape扫描仪在模型2的C-D区域(P = 0.001)和模型1的A-B区域(P≤0.01)显示出显著更高的准确性。在使用3Shape扫描仪时,与模型1和2相比,模型3在A-B区域的错误率更低。在C-D区域,模型1的错误率高于模型2和3(P≤0.01)。在使用西诺德扫描仪时,在C-D区域,模型1的错误率高于模型2(P = 0.031)和模型3(P = 0.004)。
在使用3Shape和西诺德扫描仪对三单位桥中角度种植体进行数字化印模时,随着种植体间角度的增加,旋转误差减小。