Shear Bond Strength of Composite and Ceromer Superstructures to Direct Laser Sintered and Ni-Cr-Based Infrastructures Treated with KTP, Nd:YAG, and Er:YAG Lasers: An Experimental Study.

Q2 Medicine
Oguzhan Gorler, Ihsan Hubbezoglu, Melih Ulgey, Recai Zan, Kubra Guner
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引用次数: 3

Abstract

Objective: The aim of this study was to examine the shear bond strength (SBS) of ceromer and nanohybrid composite to direct laser sintered (DLS) Cr-Co and Ni-Cr-based metal infrastructures treated with erbium-doped yttrium aluminum garnet (Er:YAG), neodymium-doped yttrium aluminum garnet (Nd:YAG), and potassium titanyl phosphate (KTP) laser modalities in in vitro settings.

Methods: Experimental specimens had four sets (n = 32) including two DLS infrastructures with ceromer and nanohybrid composite superstructures and two Ni-Cr-based infrastructures with ceromer and nanohybrid composite superstructures. Of each infrastructure set, the specimens randomized into four treatment modalities (n = 8): no treatment (controls) and Er:YAG, Nd:YAG, and KTP lasers. The infrastructures were prepared in the final dimensions of 7 × 3 mm. Ceromer and nanohybrid composite was applied to the infrastructures after their surface treatments according to randomization. The SBS of specimens was measured to test the efficacy of surface treatments. Representative scanning electron microscopy (SEM) images after laser treatments were obtained.

Results: Overall, in current experimental settings, Nd:YAG, KTP, and Er:YAG lasers, in order of efficacy, are effective to improve the bonding of ceromer and nanohybrid composite to the DLS and Ni-Cr-based infrastructures (p < 0.05). Nd:YAG laser is more effective in the DLS/ceromer infrastructures (p < 0.05). KTP laser, as second more effective preparation, is more effective in the DLS/ceromer infrastructures (p < 0.05). SEM findings presented moderate accordance with these findings.

Conclusions: The results of this study supported the bonding of ceromer and nanohybrid composite superstructures to the DLS and Ni-Cr-based infrastructures suggesting that laser modalities, in order of success, Nd:YAG, KTP, and Er:YAG, are effective to increase bonding of these structures.

KTP、Nd:YAG和Er:YAG激光处理直接激光烧结和ni - cr基基础的复合材料和陶瓷上层结构剪切结合强度的实验研究。
目的:本研究的目的是研究在体外环境下,掺铒钇铝石榴石(Er:YAG)、掺钕钇铝石榴石(Nd:YAG)和磷酸钛酸钾(KTP)激光模式下,陶瓷和纳米杂化复合材料与直接激光烧结(DLS) Cr-Co和ni - cr基金属基础结构的剪切结合强度(SBS)。方法:实验样品共4组(n = 32),包括2组具有陶瓷和纳米杂化复合材料上层结构的DLS结构和2组具有陶瓷和纳米杂化复合材料上层结构的ni - cr基结构。在每个基础设施组中,将标本随机分为四种治疗方式(n = 8):不治疗(对照组)和Er:YAG、Nd:YAG和KTP激光。基础设施的最终尺寸为7 × 3 mm。采用随机化方法对基础设施进行表面处理后,应用陶瓷和纳米杂化复合材料。测定了试样的SBS,以检验表面处理的效果。获得激光治疗后具有代表性的扫描电镜(SEM)图像。结果:总体而言,在目前的实验环境中,Nd:YAG、KTP和Er:YAG激光器,按照效率顺序,可以有效地改善陶瓷和纳米杂化复合材料与DLS和ni - cr基基础结构的结合(p)。本研究的结果支持了陶瓷和纳米杂化复合材料上层结构与DLS和ni - cr基基础结构的结合,表明激光模式(Nd:YAG, KTP和Er:YAG)可以有效地增加这些结构的结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.50
自引率
0.00%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Photobiomodulation, Photomedicine, and Laser Surgery (formerly Photomedicine and Laser Surgery) is the essential journal for cutting-edge advances and research in phototherapy, low-level laser therapy (LLLT), and laser medicine and surgery. The Journal delivers basic and clinical findings and procedures to improve the knowledge and application of these techniques in medicine.
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