Effect of Titanium Base Abutment Height and Restorative Material on Torque Maintenance of Hybrid-abutment Restoration with Offset Implant Placement.

Mohammed Aboelkhier, Mohamed Ghazy, Walid Al-Zordk
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Abstract

Purpose: The purpose of this in vitro study was to evaluate the effect of titanium base height on torque loss of monolithic zirconia, lithium disilicate, and polymer-infiltrated ceramic hybrid- abutment restorations for offset placed implant.

Materials and methods: Forty-two hybrid- abutment restorations supported by offset placed implants (diameter: 4.2 mm; length: 10 mm) were divided into 6 groups: short titanium base and zirconia (SZ), long titanium base and zirconia (LZ), short titanium base and lithium disilicate (SE), long titanium base and lithium disilicate (LE), short titanium base and polymer-infiltrated ceramic (SP), and long titanium base and polymer-infiltrated ceramic (LP). An adhesive resin cement was used to bond the restoration to the titanium base. The restoration was secured with titanium screw tightened to 30 Ncm by using a calibrated torque meter device. The specimens were exposed to thermocycling (5000 cycles at 5°C to 55°C), then cyclic loaded (120 000 cycles/50 N/1.6 Hz), where the load was placed vertically in mesial fossa of the restoration. After the loosening torque value of the abutment screw was measured by the torque meter device, the torque loss and its percentage were calculated. Two-way ANOVA, one-way ANOVA, and post hoc Tukey tests were used for statistical analysis of the data (α=.05).

Results: The 2-way ANOVA test showed significant differences in loosening torque, torque loss and percentage of torque loss across the restorative material (P<.001), no significant difference across the height of titanium base (P=.213) and no significant interaction (P=.845) between restorative material and height of titanium base. Regarding the restoration type, 1-way ANOVA test showed significant difference (F ratio=15.95, P<.001) in torque loss between groups. The mean torque loss value with monolithic zirconia was significantly higher than with lithium disilicate (P=.039) and polymer-infiltrated ceramic (P<.001), respectively. Between the lithium disilicate and polymer-infiltrated ceramic, a significant difference (P=.013) was also found.

Conclusion: The restorative material had a major effect on the torque maintenance in hybrid-abutment-restoration supported by offset placed implant, while the titanium base abutment height had no influence on it. Compared to lithium disilicate and polymer-infiltrated ceramic materials, monolithic zirconia induced higher torque loss when used as hybrid-abutment-restoration.

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钛基台高度和修复材料对偏置种植体混合基台修复体扭矩维持的影响
目的:本体外研究的目的是评估钛基底高度对偏置种植体的整体氧化锆、二硅酸锂和聚合物渗入陶瓷混合基台修复体扭矩损失的影响:将 42 个由偏置种植体(直径:4.2 毫米;长度:10 毫米)支持的混合基台修复体分为 6 组:短钛基底和氧化锆(SZ)、长钛基底和氧化锆(LZ)、短钛基底和二硅酸锂(SE)、长钛基底和二硅酸锂(LE)、短钛基底和聚合物浸润陶瓷(SP)以及长钛基底和聚合物浸润陶瓷(LP)。修复体与钛基底之间用树脂粘结剂粘结。修复体用钛螺钉固定,使用校准过的扭矩计将螺钉拧紧至 30 牛米。对试样进行热循环(5000 次,温度为 5°C 至 55°C),然后进行循环加载(120 000 次/50 N/1.6 Hz),将载荷垂直放置在修复体的中窝。用扭矩仪测量基台螺丝的松动扭矩值后,计算扭矩损失及其百分比。采用双向方差分析、单向方差分析和事后Tukey检验对数据进行统计分析(α=.05):结果:双向方差分析结果表明,不同修复材料在松动扭矩、扭矩损失和扭矩损失百分比方面存在显著差异(PC结论:修复材料对牙冠的松动扭矩、扭矩损失和扭矩损失百分比具有主要影响:修复材料对偏置种植体支持的混合基台修复体的扭力维持有很大影响,而钛基台高度对其没有影响。与二硅酸锂和聚合物渗入陶瓷材料相比,整体氧化锆在用作混合基台修复时会导致更高的扭力损失。
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