首页> 美国卫生研究院文献>Clinical and Experimental Dental Research >A strain gauge analysis comparing 4‐unit veneered zirconium dioxide implant‐borne fixed dental prosthesis on engaging and non‐engaging abutments before and after torque application
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A strain gauge analysis comparing 4‐unit veneered zirconium dioxide implant‐borne fixed dental prosthesis on engaging and non‐engaging abutments before and after torque application

机译:应变仪分析比较施加扭矩之前和之后的4个单板贴面二氧化锆种植体固定式义齿在接合和非接合基台上的情况

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摘要

This study quantified the strain development after inserting implant‐borne fixed dental prosthesis (FDP) to various implant–abutment joints. Two bone‐level implants (∅ = 4.1 mm, RC, SLA 10 mm, Ti, Straumann) were inserted in polyurethane models (N = 3) in the area of tooth nos 44 and 47. Four‐unit veneered zirconium dioxide FDPs (n = 2) were fabricated, one of which was fixed on engaging (E; RC Variobase, ∅ = 4.5 mm, H = 3.5 mm) and the other on non‐engaging (NE) abutments (RC Variobase, ∅ = 4.5 mm, H = 5.5 mm). One strain gauge was bonded to the occlusal surface of pontic no. 46 on the FDP and the other two on the polyurethane model. Before (baseline) and after torque (35 Ncm), strain values were recorded three times. Data were analyzed using Kruskal–Wallis and Mann–Whitney U tests (α = 0.05). Mean strain values presented significant increase after torque for both E and NE implant–abutment connection type (baseline: E = 4.33 ± 4.38; NE = 4.85 ± 4.85; torque: E = 196.56 ± 188.02; NE = 275.63 ± 407.7; p < .05). Mean strain values based on implant level presented significant increase after torque for both E and NE implant–abutment connection (baseline: E = 4.94 ± 5.29; NE = 5.78 ± 5.69; torque: E = 253.78 ± 178.14; NE = 347.72 ± 493.06; p < .05). The position of the strain gauge on implants (p = .895), FDP (p = .275), and abutment connection type (p = .873) did not significantly affect the strain values. Strain levels for zirconium dioxide implant‐borne FDPs were not affected by the implant–abutment connection type.
机译:这项研究量化了将种植体固定式牙修复体(FDP)插入各种种植体-基台关节后的应变发展。在第44和47号牙齿区域的聚氨酯模型(N = 3)中插入了两个骨级植入物(∅= 4.1mm,RC,SLA 10mm,Ti,Straumann)。四单元贴面二氧化锆FDP(n = 2个),其中一个固定在啮合状态(E; RC Variobase,== 4.5 mm,H = 3.5 mm),另一个固定在非啮合(NE)基台上(RC Variobase,== 4.5 mm,H = 5.5毫米)。将一个应变仪粘结到1号桥体的咬合面上。 FDP上为46,聚氨酯模型上为另外两个。在扭矩之前(基线)和扭矩之后(35 Ncm),记录了三次应变值。使用Kruskal-Wallis和Mann-Whitney U检验分析数据(α= 0.05)。对于E和NE种植体-基台连接类型,平均应变值在扭矩之后均显着增加(基线:E = 4.33±4.38; NE = 4.85±4.85;扭矩:E = 196.56±188.02; NE = 275.63±407.7; p <。 05)。基于种植体水平的平均应变值在E和NE种植体-基台连接均出现扭矩后显着增加(基线:E = 4.94±5.29; NE = 5.78±5.69;扭矩:E = 253.78±178.14; NE = 347.72±493.06; p <.05)。种植体上的应变仪(p = .895),FDP(p = .275)和基台连接类型(p = .873)的位置并没有显着影响应变值。二氧化锆植入物基FDP的应变水平不受植入物-基台连接类型的影响。

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