Larrucea Verdugo Carlos, Jaramillo Núñez Guido, Acevedo Avila Ariel, Larrucea San Martín Carlo
Postgrado de Rehabilitación Oral, Universidad de Talca, Talca, Chile.
Clin Oral Implants Res. 2014 Sep;25(9):1078-83. doi: 10.1111/clr.12217. Epub 2013 Jul 4.
This study determined the degree of marginal microleakage of the abutment-implant interface on platforms with Morse taper connection and external connection.
For this in vitro study, 42 implants, 21 with external connection and 21 with Morse taper connection, were used, immersed in acrylic resin cylinders. Each implant was joined by a prosthetic abutment screw tightened at different degrees, forming the six study groups: (1) External connection, manual tightening (2) External connection, 20 Newton (N) tightening (3) External connection, 30 N tightening (4) Morse taper connection, manual tightening (5) Morse taper connection, 20 N tightening (6) orse taper connection, 30 N tightening. All samples were subjected to load cycling and thermocycling. Then, they were submerged in a solution of 0.2% methylene blue for 24 h. Finally, the microleakage was measured via 20× optical microscopy in each study group, average was obtained, and Mann-Whitney test was applied.
Statistically significant differences (P < 0.001) were found between the levels of microleakage presented in the Morse taper connection implants (1.48) and external connection implants (2.8) in all three types of tightening. Microleakage levels decreases when increasing torque is applied to the screws.
Morse taper connection implants showed lower levels of microleakage than external connection implants; also, it was observed that microleakage decreases in the way torque increases.
本研究确定了具有莫氏锥度连接和外部连接的基台 - 种植体界面的边缘微渗漏程度。
在这项体外研究中,使用了42颗种植体,其中21颗为外部连接,21颗为莫氏锥度连接,将它们浸入丙烯酸树脂圆柱体中。每个种植体通过以不同程度拧紧的修复基台螺钉连接,形成六个研究组:(1)外部连接,手动拧紧;(2)外部连接,20牛顿(N)拧紧;(3)外部连接,30 N拧紧;(4)莫氏锥度连接,手动拧紧;(5)莫氏锥度连接,20 N拧紧;(6)莫氏锥度连接,30 N拧紧。所有样本均进行加载循环和热循环。然后,将它们浸入0.2%亚甲蓝溶液中24小时。最后,通过20倍光学显微镜测量每个研究组的微渗漏情况,计算平均值,并应用曼 - 惠特尼检验。
在所有三种拧紧方式下,莫氏锥度连接种植体(1.48)和外部连接种植体(2.8)的微渗漏水平之间存在统计学显著差异(P < 0.001)。当对螺钉施加的扭矩增加时,微渗漏水平降低。
莫氏锥度连接种植体的微渗漏水平低于外部连接种植体;此外,观察到微渗漏随着扭矩增加而降低。