首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Adhesiveness of dental resin-based restorative materials investigated with atomic force microscopy.
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Adhesiveness of dental resin-based restorative materials investigated with atomic force microscopy.

机译:用原子力显微镜研究牙科树脂基修复材料的粘合性。

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This study aimed to show that the polymerization contraction of dental methacrylate-based materials, when used as adhesives on hard substrate, produces voids at the material-substrate interface. This phenomenology is closely related with the nanoleakage and the sealing ability of these materials. One prime/bond system, three restorative composite resins, and one orthodontic bonding system were cured by using mirror-like glass slides as a compliance-free reference substrate. The adhesive surface was analyzed by atomic force microscopy, and the polymerization contraction of bulk material was tested by laser beam-scanning method. Nanoperiodic structure of three-dimensional (3D) images, section analysis, and roughness characteristics (R(a) and R(z)) indicated that polymerization contraction produced voids at the interface. When the adhesive surface was exposed to oral simulating fluids (water, ethanol, and lactic acid solutions), hydrolytic degradation involved some hundreds of nanometers in depth. In visible light-cured (VLC) materials, the interface porosity decreased when an irradiation pause ( approximately 2 min) was carried out during gelation.
机译:这项研究旨在表明,基于牙科丙烯酸甲酯的材料的聚合收缩在用作硬质基材上的粘合剂时,会在材料-基材界面处产生空隙。这种现象与这些材料的纳米泄漏和密封能力密切相关。通过使用类似镜面的玻璃片作为无柔顺性参考基材,固化了一种底漆/粘合系统,三种恢复性复合树脂和一种正畸粘合系统。通过原子力显微镜分析粘合剂表面,并通过激光束扫描法测试本体材料的聚合收缩。三维(3D)图像的纳米周期结构,截面分析和粗糙度特征(R(a)和R(z))表明聚合收缩在界面处产生空隙。当粘合剂表面暴露于口腔模拟液(水,乙醇和乳酸溶液)时,水解降解的深度约为数百纳米。在可见光固化(VLC)材料中,在凝胶化过程中进行照射暂停(约2分钟)时,界面孔隙率降低。

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