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Effect of axial loads on implant-supported partial fixed prostheses by strain gauge analysis

机译:应变仪分析轴向载荷对种植体支撑的部分固定假体的影响

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OBJECTIVES: The present study used strain gauge analysis to perform an in vitro evaluation of the effect of axial loading on 3 elements of implant-supported partial fixed prostheses, varying the type of prosthetic cylinder and the loading points. MATERIAL AND METHODS: Three internal hexagon implants were linearly embedded in a polyurethane block. Microunit abutments were connected to the implants applying a torque of 20 Ncm, and prefabricated Co-Cr cylinders and plastic prosthetic cylinders were screwed onto the abutments, which received standard patterns cast in Co-Cr alloy (n=5). Four strain gauges (SG) were bonded onto the surface of the block tangentially to the implants, SG 01 mesially to implant 1, SG 02 and SG 03 mesially and distally to implant 2, respectively, and SG 04 distally to implant 3. Each metallic structure was screwed onto the abutments with a 10 Ncm torque and an axial load of 30 kg was applied at five predetermined points (A, B, C, D, E). The data obtained from the strain gauge analyses were analyzed statistically by RM ANOVA and Tukey's test, with a level of significance of p<0.05. RESULTS: There was a significant difference for the loading point (p=0.0001), with point B generating the smallest microdeformation (239.49 με) and point D the highest (442.77 με). No significant difference was found for the cylinder type (p=0.748). CONCLUSIONS: It was concluded that the type of cylinder did not affect in the magnitude of microdeformation, but the axial loading location influenced this magnitude.
机译:目的:本研究使用应变仪分析对植入物支撑的部分固定假体的3个元件,改变假体圆柱体的类型和载荷点的轴向载荷的影响进行了体外评估。材料与方法:将三个内六角形植入物线性嵌入聚氨酯块中。将微型单元基台连接到植入物上,施加20 Ncm的扭矩,然后将预制的Co-Cr圆柱体和塑料假体圆柱体拧到基台上,这些基台接受用Co-Cr合金铸造的标准图案(n = 5)。将四个应变仪(SG)切向与种植体相切地粘合到块的表面,将SG 01近似地粘合到种植体1,将SG 02和SG 03近似地粘合到种植体2,并向远侧粘合到种植体2,将SG 04移植到种植体3的远端。将结构以10 Ncm的扭矩拧到基台上,并在五个预定点(A,B,C,D,E)施加30 kg的轴向载荷。通过RM ANOVA和Tukey检验对从应变仪分析获得的数据进行统计学分析,显着性水平为p <0.05。结果:加载点之间存在显着差异(p = 0.0001),其中B点产生的最小变形量(239.49με),D点产生的最大变形量(442.77με)。气缸类型没有发现显着差异(p = 0.748)。结论:得出的结论是,圆柱体的类型对微变形量没有影响,但是轴向载荷位置影响了该变形量。

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