Zhou Yuan, You Lang, Fan Zhen
Shanghai Xuhui District Dental Center, Shanghai, China.
Shanghai Engineering Research Center of Tooth Restoration and Regeneration & Tongji Research Institute of Stomatology & Department of Implantology, Stomatological Hospital, Dental School, Tongji University, Shanghai, China.
BMC Oral Health. 2024 Oct 1;24(1):1167. doi: 10.1186/s12903-024-04888-1.
In edentulous jaws, factors such as the number of implants, cross-arch distribution, and the angle among implants may affect the accuracy of the implant impression. This study explored factors influencing the accuracy of implant abutment-level digital impressions using stereophotogrammetry in edentulous jaws.
Two standard all-on-4 and all-on-6 models of edentulous jaws were constructed in vitro. In the stereophotogrammetry group (PG), the implant digital impression was made using stereophotogrammetry and saved as an STL file. In the conventional group (CNV), the impression was made using the open-tray splint impression technique. An electronic and optical 3D measuring instrument was used to scan the standard model and the conventional plaster model to obtain STL files. Using 3D data processing software (GOM Inspect Pro, Zeiss), the distance and angle between the abutments in the CNV impression and the PG impression were measured and compared with the data from the standard model.
The distance deviation in the PG and the CNV was 145 ± 196 μm and 96 ± 150 μm, respectively, with a significant difference (P < 0.001). The angle deviation in the PG and the CNV was 0.82 ± 0.88° and 0.74 ± 0.62°, respectively, with no significant difference (P = 0.267). In the PG, the distance deviation was negatively correlated with the distance between implants (r = -0.145, P = 0.028) and positively correlated with the angle of implants (r = 0.205, P = 0.002). The angle deviation was negatively correlated with the distance between implants (r = -0.198, P = 0.003) and positively correlated with the angle of implants (r = 0.172, P = 0.009). In the CNV, the effect of inter-implant distance on impression accuracy was also shown by Spearman correlation analysis: r = 0.347 (P < 0.001) for distance deviation and r = -0.012 (P = 0.859) for angle deviation. The effect of inter-implant angulation on impression accuracy deviation was r = -0.026 (P = 0.698) for distance deviation and r = 0.056 (P = 0.399) for angle deviation.
The CNV method is closer to the real value of the original model. The distance between implants and the distribution angle had a weak correlation with the accuracy of digital impressions but no significant correlation with the accuracy of traditional impressions.
在无牙颌中,种植体数量、跨牙弓分布以及种植体之间的角度等因素可能会影响种植体印模的准确性。本研究探讨了在无牙颌中使用立体摄影测量法影响种植体基台水平数字印模准确性的因素。
在体外构建两个标准的无牙颌全口4颗种植体和全口6颗种植体模型。在立体摄影测量组(PG组),使用立体摄影测量法制作种植体数字印模并保存为STL文件。在传统组(CNV组),采用开放托盘夹板印模技术制作印模。使用电子和光学三维测量仪器扫描标准模型和传统石膏模型以获取STL文件。使用三维数据处理软件(GOM Inspect Pro,蔡司)测量CNV组印模和PG组印模中基台之间的距离和角度,并与标准模型的数据进行比较。
PG组和CNV组的距离偏差分别为145±196μm和96±150μm,差异有统计学意义(P<0.001)。PG组和CNV组的角度偏差分别为0.82±0.88°和0.74±0.62°,差异无统计学意义(P = 0.267)。在PG组中,距离偏差与种植体之间的距离呈负相关(r = -0.145,P = 0.028),与种植体的角度呈正相关(r = 0.205,P = 0.002)。角度偏差与种植体之间的距离呈负相关(r = -0.198,P = 0.003),与种植体的角度呈正相关(r = 0.172,P = 0.009)。在CNV组中,Spearman相关性分析也显示了种植体间距离对印模准确性的影响:距离偏差r = 0.347(P<0.001),角度偏差r = -0.012(P = 0.859)。种植体间角度对印模准确性偏差的影响为距离偏差r = -0.026(P = 0.698),角度偏差r = 0.056(P = 0.399)。
CNV法更接近原始模型的真实值。种植体之间的距离和分布角度与数字印模的准确性相关性较弱,但与传统印模的准确性无显著相关性。