El-Sheikh Mai Ahmed Yousry, Mostafa Tamer Mohamed Nasr, El-Sheikh Mohamed Maamoun
Prosthodontic Department, Faculty of Dentistry, Tanta University, Elgeish St., Tanta, Egypt.
Int J Implant Dent. 2018 Dec 3;4(1):39. doi: 10.1186/s40729-018-0149-z.
The purpose of this in vitro study was to evaluate the effect of different angulations and collar lengths of the implant abutment on screw loosening by measuring removal torque value (RTV) before and after dynamic cyclic loading using digital torque gauge.
A total 90 sets of 4.5 mm diameter × 10 mm length bone level implants with conical hybrid connection were used. They were divided equally according to abutment angulation, into three groups: GI 0° abutment, GII 15° abutment, and GIII 25°. Each group was divided into two subgroups, 15 each, according to collar height: subgroup A (2 mm) and subgroup B (4 mm). Each implant and abutment assembly was positioned vertically in the center of the acrylic resin block using stainless steel cylindrical split mold. Initial analysis was made by abutment screw tightened with 30 Ncm torque twice with 10-min intervals using a digital torque gauge. RTV before and after cyclic loading of the abutment screws were measured in newton centimeter using digital torque gauge. One hundred thousand cycles of eccentric dynamic cyclic loading, at 130 N at a rate of 1 Hz, were applied 5 mm away from the central axis of the implant fixture. Percentage of removal torque loss (%RTL) before and after dynamic cyclic loading were calculated and statistically analyzed using the SPSS version 20.
For GI, %initial RTL was 25.0 ± 1.5% and decreased significantly after loading (23.5 ± 2.3%). For GII, %initial RTL was 25.5 ± 1.4% and increased significantly after loading (33.4 ± 3.7%). For GIII, %initial RTL was 25.944 ± 1.2% and increased significantly after loading (40.1 ± 5.1%). There was significant effect on screw loosening for abutment angulations and collar lengths.
Within the limitations of this study, results suggested that screw loosening increases with increasing abutment angulations and collar lengths after dynamic cyclic loading.
本体外研究的目的是通过使用数字扭矩计测量动态循环加载前后的拆除扭矩值(RTV),评估种植体基台不同角度和颈部长度对螺钉松动的影响。
总共使用90套直径4.5毫米×长度10毫米、带有锥形混合连接的骨水平种植体。根据基台角度将它们平均分为三组:GI组为0°基台,GII组为15°基台,GIII组为25°基台。每组根据颈部高度再分为两个亚组,各15个:亚组A(2毫米)和亚组B(4毫米)。使用不锈钢圆柱形分体模具将每个种植体和基台组件垂直放置在丙烯酸树脂块的中心。使用数字扭矩计,以30 Ncm的扭矩分两次拧紧基台螺钉,每次间隔10分钟,进行初始分析。使用数字扭矩计以牛顿厘米为单位测量基台螺钉循环加载前后的RTV。在距种植体固定装置中心轴5毫米处施加100000次偏心动态循环加载,频率为1赫兹,力为130 N。计算动态循环加载前后的拆除扭矩损失百分比(%RTL),并使用SPSS 20版进行统计分析。
对于GI组,初始%RTL为25.0±1.5%,加载后显著降低(23.5±2.3%)。对于GII组,初始%RTL为25.5±1.4%,加载后显著增加(33.4±3.7%)。对于GIII组,初始%RTL为25.944±1.2%,加载后显著增加(40.1±5.1%)。基台角度和颈部长度对螺钉松动有显著影响。
在本研究的局限性内,结果表明动态循环加载后,螺钉松动随着基台角度和颈部长度的增加而增加。