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两种不同表面处理对两种不同核材料的Cosmospost固位力的影响。

Effect of Two Different Surface Treatments on Retention of Cosmopost with Two Different Core Materials.

作者信息

Qudaih Mohamed A, Yousief Salah A, Allabban Mahmoud N M, Nejri Ali Abkar Mohammed, Elmarakby Ahmed Mohamed

机构信息

Department of Restorative Dental Sciences, AlFarabi Private College for Dentistry and Nursing, Jeddah, Kingdom of Saudi Arabia.

Department of Fixed Prosthodontic, Faculty of Dental Medicine, Al-Azhar University, Assiut Branch, Cairo, Egypt.

出版信息

Clin Cosmet Investig Dent. 2020 Mar 30;12:87-100. doi: 10.2147/CCIDE.S236323. eCollection 2020.

Abstract

OBJECTIVE

The objective of this study was to determine the effect of Cosmopost's two different surface treatments (sandblasting and silica coating) on persistence to various core materials using push-out test set-up.

MATERIAL AND METHODS

A total of 30 Cosmoposts was used in this study. Cosmoposts were divided into three groups (10 samples each) according to the post-surface treatment received. Every category was additionally subdivided into two subgroups according to the type of core material (n = 5 samples). A specially designed copper mold was used for construction of different core materials with standardized dimensions around the posts, in such a way to ensure that the posts will be centralized. Surface roughness was estimated for all Cosmoposts, following different surface treatments using SEM. Cylindrical cores were fabricated of either composite resin or heat-pressed zirconia-containing glass-ceramic (IPS Empress Cosmo, Ivoclar Vivadent). Following the construction of different Core materials, samples were subjected to push-out test set-up to Evaluate the impact of various treatments on post/core bond strength. Data were collected, tabulated and statistically analyzed. SEM was performed on Cosmoposts following debonding of different post/core samples to determine their mode of failure.

RESULTS

Results of push-out bond strength revealed that core material, surface treatment and the interaction between the two variables using Two-way ANOVA had a statistically significant effect on mean push-out bond strength. Regarding the effect of type of core material on Push-out bond strength, results showed that IPS Empress Cores showed statistically significant higher mean push-out bond strength to Cosmopost (36.4±9.7MPa) than composite cores (15.8±2.5 MPa).

CONCLUSION

Within the limitations of this study, direct heat-pressed ceramic core was more beneficial for zirconia post buildups, than Composite Cores, since they provided higher bond strength. Thanks to a double improvement: increase in fracture resistance and retentive capacity to post. Also, Tribochemical Silicacoating technique was proved to be more effective in Cosmopost treatments than sandblasting technique.

摘要

目的

本研究的目的是使用推出试验装置,确定Cosmospost的两种不同表面处理(喷砂和二氧化硅涂层)对各种核心材料持久性的影响。

材料与方法

本研究共使用了30根Cosmospost。根据所接受的桩表面处理,将Cosmospost分为三组(每组10个样本)。每个类别又根据核心材料的类型进一步细分为两个亚组(n = 5个样本)。使用专门设计的铜模具围绕桩构建具有标准化尺寸的不同核心材料,以确保桩居中。使用扫描电子显微镜(SEM)对经过不同表面处理的所有Cosmospost进行表面粗糙度评估。圆柱形核心由复合树脂或热压含氧化锆玻璃陶瓷(IPS Empress Cosmo,义获嘉伟瓦登特公司)制成。构建不同的核心材料后,对样本进行推出试验装置,以评估各种处理对桩/核心粘结强度的影响。收集数据、列表并进行统计分析。在不同桩/核心样本脱粘后,对Cosmospost进行SEM分析,以确定其失效模式。

结果

推出粘结强度结果显示,使用双向方差分析,核心材料、表面处理以及这两个变量之间的相互作用对平均推出粘结强度具有统计学显著影响。关于核心材料类型对推出粘结强度的影响,结果表明,IPS Empress核心对Cosmospost的平均推出粘结强度(36.4±9.7MPa)在统计学上显著高于复合核心(15.8±2.5MPa)。

结论

在本研究的局限性内,直接热压陶瓷核心比复合核心更有利于氧化锆桩核修复,因为它们提供了更高的粘结强度。得益于双重改善:提高了抗断裂性和对桩的固位能力。此外,摩擦化学硅涂层技术在Cosmospost处理中被证明比喷砂技术更有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82e6/7125339/341ca659dd9c/CCIDE-12-87-g0001.jpg

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