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三棱镜-棱镜三维空间微观结构对牙釉质粘结强度的影响。

Effect of the prism-interprisms three-dimension spatial microstructure on the enamel bond strength.

机构信息

Stomatology Hospital, School of Stomatology, Zhejiang University School of Medicine, Zhejiang Provincial Clinical Research Center for Oral Diseases, Key Laboratory of Oral Biomedical Research of Zhejiang Province, Cancer Center of Zhejiang University, Engineering Research Center of Oral Biomaterials and Devices of Zhejiang Province, Hangzhou, 310006, China.

School of Stomatology, Zhejiang University School of Medicine, Hangzhou, China.

出版信息

BMC Oral Health. 2023 Nov 13;23(1):855. doi: 10.1186/s12903-023-03599-3.

Abstract

The prism-interprisms level of the enamel hierarchical microstructure is the largest degree of structural variation and most sophisticated structural adaptation. We studied the effect of the prism-interprisms three-dimension spatial microstructure on the enamel bond strength. We prepared 11 groups of enamel segments: longitudinally sectioned segments with or without a 45-degree bevel (group = 2), horizontally sectioned segments with or without a 45-degree bevel of three regions (the incisal, middle, and cervical) (group = 6), and tangential (labial) sectioned segments of three regions (the incisal, middle, and cervical) (group = 3). The finished surface of each segment was observed by scanning electric microscopy (SEM) before treatment with four self-etch adhesive systems and applied with four corresponding composite resins. Resin-bonded enamel samples were prepared in beams for microtensile bond strength (MTBS) tests. The results were analyzed with a three-way ANOVA followed by Tukey's post-hoc HSD multiple comparisons procedure. SEM observations revealed complex arrangements of prisms and interprisms. MTBS measurement showed that the longitudinally sectioned group had the lowest value, without significant differences between the groups with or without 45-degree bevel. Combining SEM observations and MTBS measurements, the prism-interprisms microstructure varied with the incisor regions, and different prism-interprisms microstructures allowed diverse sectioned surfaces, which could affect the enamel bonding.

摘要

釉质分层微观结构的棱柱-棱柱间层次是结构变异的最大程度和最复杂的结构适应。我们研究了棱柱-棱柱间三维空间微观结构对釉质结合强度的影响。我们制备了 11 组釉质段:有或没有 45 度斜面的纵向切片段(组=2)、有或没有三个区域(切端、中部和颈段)45 度斜面的水平切片段(组=6),以及三个区域(切端、中部和颈段)的切向(唇面)切片段(组=3)。每个段的完成表面在使用四种自酸蚀粘接系统处理之前用扫描电子显微镜(SEM)观察,并应用四种相应的复合树脂。将树脂粘结的釉质样本制备成梁进行微拉伸粘结强度(MTBS)测试。结果采用三因素方差分析,然后进行 Tukey 的事后 HSD 多重比较程序进行分析。SEM 观察显示棱柱和棱柱间的复杂排列。MTBS 测量显示,纵向切片组的数值最低,有或没有 45 度斜面的组之间没有显著差异。结合 SEM 观察和 MTBS 测量,棱柱-棱柱间微观结构随切牙区域而变化,不同的棱柱-棱柱间微观结构允许不同的切片表面,这可能影响釉质粘结。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b463/10642037/a5db227c9a0a/12903_2023_3599_Fig1_HTML.jpg

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