改良和修复义齿基托表面调节假牙粘结强度随老化的评价

Hikmat J Aljudy, A. N. Ahmad, Ihab N AlSafi
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引用次数: 3

摘要

背景:亚克力牙和烤瓷牙的粘结失败是为患者提供部分和全口义齿服务的主要临床缺点。本研究的目的是研究两种类型义齿基托(5% zro2纳米填料和valplast加固热固化基托)与(丙烯酸牙和烤瓷牙)在牙槽搭接调理和老化后的拉伸和剪切粘结强度。测量结果与传统义齿基托进行比较。材料和方法:用纳米ZrO2和valplast加固义齿基托,与丙烯酸牙和烤瓷牙结合。试样按抗剪强度和抗拉强度进行了划分。每个包含5个样本。采用不同的处理方法对其进行时效处理。用强度测试装置测定拉伸和剪切粘结强度。亚组间比较采用方差分析(f检验)和t检验对结果进行整理和评价。结果:与传统的热固化树脂和valplast树脂相比,纳米增强义齿基托与人工牙的分离需要更高的拉伸力和剪切力。失效的模式,无论是在义齿基托或在牙齿本身与valplast树脂比较。松节油处理过的丙烯酸牙和氢氟酸处理过的瓷牙比未处理过的牙表现出更高的拉伸和剪切结合。与纳米增强和常规热固化相比,老化对人工牙与义齿基托的结合强度有持续的破坏作用。结论:纳米填料对树脂的增强和化学剂对牙梁搭接的调理,增强了人工牙的抗拉剪切粘结强度,使粘结更牢固、更持久,能够承受口腔环境的波动。
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Evaluation of Bond Strength of Surface Conditioned Artificial Teeth with Modified and Valplast Denture Bases With Aging
Background: bond failure of acrylic and porcelain teeth represents primary clinical disadvantages of partial and complete denture services provided to the patient. The aims of the study were to investigate the tensile and shear bond strength of two types of denture bases (heat cured reinforced with 5% ZrO2nano-fillers and valplast) with (acrylic and porcelain) teeth after ridge lap conditioning and using aging. The measurements were used for comparison with traditional denture base. Materials and methods: denture bases reinforced with nano ZrO2 and valplast were bonded to acrylic and porcelain teeth. Samples were divided for shear and tensile strength. Each contains 5 samples. The ridge lap surface were conditioned by different treatments and then subjected to aging. Tensile and shear bond strength measured by instron testing device. The results were organized and evaluated by using analysis of variance (f-test) and t-test for comparison between subgroups. Results: artificial teeth bonded to nano reinforced denture base required higher tensile and shear force to separate when compared with traditional heat cured and valplast resins. The mode of failure where cohesive either in the denture base or in the tooth itself when compared with valplast resin. Acrylic teeth conditioned with turpentine and porcelain with hydrofluoric acid express higher tensile and shear bond compared with unconditioned teeth. Aging sustained damaging effects on the bond strength of artificial teeth bonded to valplast denture base in compared with nano reinforced and conventional heat cured. Conclusions: tensile and shear bond strength of artificial teeth enhanced by the reinforcement of the resin with nano-sized fillers and by conditioning of the teeth ridge lap using chemical agents, making the bond stronger and durable to withstand fluctuated oral conditions.
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