Körtvélyessy Győző, Szabó Árpád László, Pelsőczi-Kovács István, Tarjányi Tamás, Tóth Zsolt, Kárpáti Krisztina, Matusovits Danica, Hangyási Botond Dávid, Baráth Zoltán
Department of Oral Biology and Experimental Dental Research, Faculty of Dentistry, University of Szeged, Tisza Lajos krt. 64-66, H-6720 Szeged, Hungary.
Department of Prosthodontics, Faculty of Dentistry, University of Szeged, Tisza Lajos krt. 64-66, H-6720 Szeged, Hungary.
Materials (Basel). 2023 Feb 28;16(5):1988. doi: 10.3390/ma16051988.
Dental implants are artificial dental roots anchoring prosthetic restorations to replace natural teeth. Dental implant systems may have different tapered conical connections. Our research focused on the mechanical examination of implant-superstructure connections. Thirty-five samples with 5 different cone angles (24°, 35°, 55°, 75°, and 90°) were tested for static and dynamic loads, carried out by a mechanical fatigue testing machine. Fixing screws were fixed with a torque of 35 Ncm before measurements. For static loading, samples were loaded with a force of 500 N in 20 s. For dynamic loading, the samples were loaded for 15,000 cycles with a force of 250 ± 150 N. In both cases, the compression resulting from load and reverse torque was examined. At the highest compression load of the static tests, a significant difference ( = 0.021) was found for each cone angle group. Following dynamic loading, significant differences ( < 0.001) for the reverse torques of the fixing screw were also shown. Static and dynamic results showed a similar trend: under the same loading conditions, changing the cone angle-which determines the relationship between the implant and the abutment-had led to significant differences in the loosening of the fixing screw. In conclusion, the greater the angle of the implant-superstructure connection, the smaller the screw loosening due to loading, which may have considerable effects on the long-term, safe operation of the dental prosthesis.
牙种植体是将修复假体固定就位以替代天然牙的人工牙根。牙种植体系统可能有不同的锥形连接。我们的研究聚焦于种植体与上部结构连接的力学检测。使用一台机械疲劳试验机对35个具有5种不同锥角(24°、35°、55°、75°和90°)的样本进行静载和动载测试。在测量前,以35 Ncm的扭矩固定固定螺钉。对于静载,样本在20秒内承受500 N的力。对于动载,样本承受250±150 N的力进行15000次循环加载。在两种情况下,均检测由载荷和反向扭矩产生的压缩。在静载测试的最高压缩载荷下,每个锥角组均发现有显著差异(P = 0.021)。动载加载后,固定螺钉的反向扭矩也显示出显著差异(P < 0.001)。静载和动载结果显示出相似趋势:在相同加载条件下,改变决定种植体与基台之间关系的锥角会导致固定螺钉松动出现显著差异。总之,种植体与上部结构连接的角度越大,因加载导致的螺钉松动越小,这可能对牙修复体的长期安全运行有相当大的影响。