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Influence of Luting Materials on the Retention of Cemented Implant-Supported Crowns: An In Vitro Study

机译:诱饵材料对骨水泥固位冠冠固位的影响:一项体外研究

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摘要

The retention force of cemented crowns on implant abutments with various luting materials was evaluated. Cobalt–chromium crowns were cemented onto tapered titanium abutments (Camlog) with eugenol-free temporary cement (RelyX TempBond NE), composite-based temporary cement (Bifix Temp), zinc phosphate cement (Harvard Cement), glass-ionomer cements (Meron, Fuji I), and resin-modified glass-ionomer cements (Fuji II, Fuji Plus, Ketac Cem Plus). Specimen aging via hydrostress was performed in artificial saliva at 37 °C for 14 days (S1), followed by hydrothermal stress with thermocycling (S2). The crowns were removed, and the force was recorded (T1). Subsequently, the crowns were recemented, aged, and removed, and the force was recorded (T2, T3). The retention forces differences were statistically significant according to the storage conditions at T1 (p = 0.002) and T3 (p = 0.0002). After aging (S1), Ketac Cem Plus had the highest retention force median value difference (T3 versus T1) (−773 N), whereas RelyX TempBond NE had the lowest (−146 N). After aging (S2), Meron had the highest retention force median value difference (−783 N), whereas RelyX TempBond NE had the lowest (−168 N). Recementation decreased the retention force of the implant-supported cobalt–chromium crowns cemented and recemented with the same luting materials. Luting materials (at T1) and aging conditions significantly impacted the retention force.
机译:评估了各种冠状材料在种植体基台上的牙冠固位力。用无丁香酚的临时水泥(RelyX TempBond NE),复合基临时水泥(Bifix Temp),磷酸锌水泥(哈佛水泥),玻璃离聚物水泥(Meron, Fuji I)和树脂改性的玻璃离聚物水泥(Fuji II,Fuji Plus,Ketac Cem Plus)。在37°C的人造唾液中通过水应力进行标本老化14天(S1),然后通过热循环进行水热应力(S2)。移除冠,并记录力(T1)。随后,将牙冠复位,老化并取下,并记录力(T2,T3)。根据在T1(p = 0.002)和T3(p = 0.0002)的存储条件,保持力差异在统计上是显着的。老化(S1)后,Ketac Cem Plus的保持力中值差异最大(T3与T1)(-773 N),而RelyX TempBond NE最低(-146 N)。老化(S2)后,Meron具有最大的保持力中值差异(-783 N),而RelyX TempBond NE具有最低的(-168 N)。补牙降低了植入物支撑的钴铬冠的固位力,该钴-铬冠用相同的胶合材料粘合和再粘合。切削材料(在T1时)和老化条件会显着影响固位力。

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