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首页> 外文期刊>The Journal of Prosthetic Dentistry >Effectiveness of metal surface treatments in controlling microleakage of the acrylic resin-metal framework interface.
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Effectiveness of metal surface treatments in controlling microleakage of the acrylic resin-metal framework interface.

机译:金属表面处理在控制丙烯酸树脂-金属骨架界面的微渗漏中的有效性。

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摘要

STATEMENT OF PROBLEM: Microleakage at the junction between the metal alloy and acrylic resin in a removable partial denture may result in discoloration, fluid percolation, and acrylic resin deterioration. The junction between a metal alloy and acrylic resin is an area of clinical concern. Failure of a removable partial denture may be linked to this interface. Enhancing resistance to microleakage at this interface may improve the long-term union between the 2 materials. PURPOSE: This investigation was designed to determine the effects of various metal surface treatment protocols on microleakage and bond strength between the metal alloy and acrylic resin used in the fabrication of a removable partial denture. MATERIAL AND METHODS: Ninety-six nickel-chromium-beryllium alloy specimens were randomly divided into 8 groups. After adaptation of baseplate wax, each specimen was invested. Subsequent to wax removal, each specimen was divided into a control half and an experimental half. Air abrasion, tinplating/oxidation, and silanation were evaluated individually and in all combinations. Heat-polymerized acrylic resin was processed against all specimens before storage in distilled water at 37 degrees C for 72 hours. Each specimen then was thermocycled in distilled water (3000 cycles) before immersion in sodium fluorescein dye for 24 hours. Counting grids that exhibited dye penetration under ultraviolet light exposure allowed assessment of microleakage. RESULTS: Air abrasion resulted in a significant decrease in microleakage when used individually and in all combinations (P<0.05). All experimental combinations that did not involve air abrasion demonstrated no significant reduction in measured microleakage between the experimental and control sides. Tukey's pair-wise comparison of the difference in the mean number of squares exhibiting microleakage between the control and treated sites for each experimental group revealed a significant difference, based on the involvement of air abrasion. Groups involving air abrasion did not differ significantly from each other (P<0.05). In addition, no significant difference was detected between groups not involving air abrasion (P<0.05). CONCLUSION: Air abrasion, alone and in combination with tinplating/oxidation and with silanation, resulted in a significant reduction in microleakage between the metal alloy and acrylic resin.
机译:问题陈述:在可摘局部义齿中,金属合金与丙烯酸树脂之间的接合处微渗漏可能导致变色,流体渗滤和丙烯酸树脂劣化。金属合金和丙烯酸树脂之间的连接是临床关注的领域。可摘局部义齿的故障可能与该接口有关。在此界面处增强对微渗漏的抵抗力可以改善两种材料之间的长期结合。目的:本研究旨在确定各种金属表面处理方案对制造可移动局部义齿的金属合金与丙烯酸树脂之间的微渗漏和粘结强度的影响。材料与方法:96个镍铬铍合金试样随机分为8组。适应底板蜡后,对每个样品进行投资。除去蜡后,将每个样品分成对照一半和实验一半。分别并以所有组合评估空气磨损,镀锡/氧化和硅烷化。对所有样品进行热聚合丙烯酸树脂处理,然后在37℃的蒸馏水中保存72小时。然后将每个样品在蒸馏水中热循环(3000个循环),然后浸入荧光素钠染料中24小时。计数在紫外线照射下表现出染料渗透的网格可以评估微渗漏。结果:单独和所有组合使用时,空气磨损导致微渗漏显着降低(P <0.05)。所有不涉及空气磨损的实验组合均未在实验侧和对照侧之间测得的微渗漏量显着降低。 Tukey的成对比较每个实验组的对照组和治疗组之间显示微渗漏的平均平方数的差异,显示了基于空气磨损的显着差异。涉及空气磨损的组之间没有显着差异(P <0.05)。另外,在不涉及空气磨损的组之间未检测到显着差异(P <0.05)。结论:单独进行空气磨损以及与镀锡/氧化和硅烷化相结合,可显着减少金属合金与丙烯酸树脂之间的微渗漏。

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