首页> 外文期刊>Clinical oral investigations >Impact of Gluma Desensitizer on the tensile strength of zirconia crowns bonded to dentin: An in vitro study
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Impact of Gluma Desensitizer on the tensile strength of zirconia crowns bonded to dentin: An in vitro study

机译:牙髓脱敏剂对结合在牙本质上的氧化锆冠的拉伸强度的影响:一项体外研究

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摘要

This study tested the impact of Gluma Desensitizer on the tensile strength of zirconia crowns bonded to dentin. Human teeth were prepared and randomly divided into six groups (N = 144, n = 24 per group). For each tooth, a zirconia crown was manufactured. The zirconia crowns were cemented with: (1) Panavia21 (PAN), (2) Panavia21 combined with Gluma Desensitizer (PAN-G), (3) RelyX Unicem (RXU), (4) RelyX Unicem combined with Gluma Desensitizer (RXU-G), (5) G-Cem (GCM) and (6) G-Cem combined with Gluma Desensitizer (GCM-G). The initial tensile strength was measured in half (n = 12) of each group and the other half (n = 12) subjected to a chewing machine (1. 2 Mio, 49 N, 5°C/50°C). The cemented crowns were pulled in a Universal Testing Machine (1 mm/min, Zwick Z010) until failure occurred and tensile strength was calculated. Data were analyzed with one-way and two-way ANOVA followed by a post hoc Scheffé test, t test and Kaplan-Meier analysis with a Breslow-Gehan analysis test (α = 0. 05). After the chewing simulation, the self-adhesive resin cements combined with Gluma Desensitizer showed significantly higher tensile strength (RXU-G, 12. 8 ± 4. 3 MPa; GCM-G, 13. 4 ± 6. 2 MPa) than PAN (7. 3 ± 1. 7 MPa) and PAN-G (0. 9 ± 0. 6). Within the groups, PAN, PAN-G and RXU resulted in significantly lower values when compared to the initial tensile strength; the values of all other test groups were stable. In this study, self-adhesive resin cements combined with Gluma Desensitizer reached better long-term stability compared to PAN and PAN-G after chewing simulation.
机译:这项研究测试了Gluma脱敏剂对粘结在牙本质上的氧化锆冠的拉伸强度的影响。准备好人类的牙齿并将其随机分为六组(每组N = 144,n = 24)。对于每个牙齿,制造一个氧化锆冠。氧化锆冠用以下材料固结:(1)Panavia21(PAN),(2)Panavia21与Gluma脱敏剂(PAN-G)结合,(3)RelyX Unicem(RXU),(4)RelyX Unicem与Gluma脱敏剂(RXU- G),(5)G-Cem(GCM)和(6)G-Cem结合Gluma脱敏剂(GCM-G)。在每组的一半(n = 12)中和在咀嚼机(1.2Mio,49N,5℃/ 50℃)下对另一半(n = 12)中测量初始拉伸强度。在万能试验机(1 mm / min,Zwick Z010)中拉水泥冠,直到发生破坏并计算拉伸强度。使用单向和双向ANOVA分析数据,然后进行事后Scheffé检验,t检验和采用Breslow-Gehan分析检验(α= 0. 05)的Kaplan-Meier分析。咀嚼模拟后,与Gluma脱敏剂组合的自粘树脂胶粘剂显示出比PAN高得多的拉伸强度(RXU-G,12。8±4. 3 MPa; GCM-G,13。4±6. 2 MPa)。 7. 3±1. 7 MPa)和PAN-G(0. 9±0. 6)。与初始拉伸强度相比,PAN,PAN-G和RXU组的值明显较低;所有其他测试组的值均稳定。在这项研究中,咀嚼模拟后,与PAN和PAN-G相比,与Gluma脱敏剂结合的自粘树脂胶粘剂具有更好的长期稳定性。

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