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Caries-resistant bonding layer in dentin

机译:牙本质中抗龋齿的粘结层

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摘要

The present study examined the mechanism for caries resistance and the pulp responses in vital teeth following the use of the augmented-pressure adhesive displacement technique. Dentin adhesives were applied to the surface of sound dentin disks in 4 experimental groups: non-antibacterial adhesive and gentle adhesive displacement (N-G), non-antibacterial adhesive and augmented-pressure adhesive displacement (N-H), antibacterial adhesive and gentle adhesive displacement (A-G), antibacterial adhesive and augmented-pressure adhesive displacement (A-H). The depth of demineralization induced by biological or chemical demineralization models was measured using confocal laser scanning microscopy and analyzed with two-way ANOVA. Pulp responses of vital dog’s teeth to the augmented-pressure adhesive displacement technique were evaluated using light microscopy. Depth of demineralization was significantly affected by “adhesive type” and “intensity of adhesive displacement” for biological demineralization. For chemical demineralization, only “intensity of adhesive displacement” showed significant influence on lesion depth. Pulp response of 0.1, 0.2 and 0.3 MPa groups showed only moderate disorganization of the odontoblast layer at 24 hours that completely re-organized after 3 weeks. Augmented-pressure adhesive displacement improves the caries resistance property of bonded dentin and does not cause irreversible pulpal damage to vital teeth when the air pressure employed is equal or smaller than 0.3 MPa.
机译:本研究检查了使用增高压力胶粘置换技术后,重要牙齿的耐龋齿和牙髓反应的机制。在四个实验组中,将牙本质胶粘剂应用于声音牙本质盘的表面:非抗菌胶粘剂和轻度胶粘剂置换(NG),非抗菌胶粘剂和增压胶体置换(NH),抗菌胶剂和轻度胶粘剂置换(AG) ),抗菌胶和高压胶置换量(AH)。使用共聚焦激光扫描显微镜测量由生物或化学脱盐模型诱导的脱盐深度,并通过双向方差分析进行分析。使用光学显微镜评估了活泼狗的牙齿对增压粘合剂置换技术的牙髓反应。脱盐深度受到生物脱盐的“粘合剂类型”和“粘合剂位移强度”的显着影响。对于化学脱矿质,仅“粘合剂位移强度”对病变深度有显着影响。 0.1、0.2和0.3 MPa组的纸浆反应显示,成牙本质细胞层在24小时时只有中等程度的混乱,在3周后完全重新组织。当使用的气压等于或小于0.3 MPa时,增强压力的胶粘剂位移改善了粘结牙本质的耐龋齿性能,并且不会对活齿造成不可逆的牙髓损伤。

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