Gehrke Sergio Alexandre, Delgado-Ruiz Rafael Arcesio, Prados Frutos Juan Carlos, Prados-Privado María, Dedavid Berenice Anina, Granero Marín Jose Manuel, Calvo Guirado José Luiz
Int J Oral Maxillofac Implants. 2017 Jul/Aug;32(4):822-829. doi: 10.11607/jomi.5629.
This study aimed to evaluate the misfit of three different implant-abutment connections before and after cycling load.
One hundred twenty dental implants and correspondent prefabricated titanium abutments were used. Three different implant-abutment connections were evaluated: Morse taper (MT group), external hexagon (EH group), and internal hexagon (IH group). Forty implants and 40 abutments were used per group. The parameters for the mechanical evaluation were set as: 360,000 cycles, load of 150 N, and frequency of 4 Hz. Samples were sectioned in their longitudinal and transversal axes, and the misfit of the implant-abutment connection was evaluated by scanning electron microscopy analysis. One-way analyses of variance, Tukey post hoc analyses (α = .05), and t test (P < .05) were used to determine differences between groups.
At the longitudinal direction, all the groups showed the presence of microgaps before cycling load; after cycling load, microgaps were reduced in all groups (P > .05). Transversally, only the MT group showed full fitting after cycling load compared with the other groups (EH and IH) (P < .0001).
The application of cycling load produces an accommodation of the implant-abutment connection in internal, external, and Morse taper connections. In the longitudinal direction, the accommodation decreases and/or eliminates the gap observed initially (before load). In the horizontal direction, Morse cone implant-abutment connections experience a complete accommodation with the elimination of the gap.
本研究旨在评估三种不同种植体-基台连接在循环加载前后的不匹配情况。
使用了120颗牙科种植体及相应的预制钛基台。评估了三种不同的种植体-基台连接:莫氏锥度(MT组)、外六角(EH组)和内六角(IH组)。每组使用40颗种植体和40个基台。机械评估参数设定为:360,000次循环、150 N的载荷和4 Hz的频率。将样本沿其纵轴和横轴切开,并通过扫描电子显微镜分析评估种植体-基台连接的不匹配情况。采用单因素方差分析、Tukey事后分析(α = .05)和t检验(P < .05)来确定组间差异。
在纵向,所有组在循环加载前均存在微间隙;循环加载后,所有组的微间隙均减小(P > .05)。在横向,与其他组(EH和IH)相比,只有MT组在循环加载后显示完全贴合(P < .0001)。
循环加载的应用使种植体-基台连接在内部、外部和莫氏锥度连接中得到适应性调整。在纵向,这种适应性调整减小和/或消除了最初(加载前)观察到的间隙。在水平方向,莫氏锥度种植体-基台连接实现了完全适应,间隙消除。