首页> 美国卫生研究院文献>ISRN Dentistry >Temperature Rise during Primer Adhesive and Composite Resin Photopolymerization of a Low-Shrinkage Composite Resin under Caries-Like Dentin Lesions
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Temperature Rise during Primer Adhesive and Composite Resin Photopolymerization of a Low-Shrinkage Composite Resin under Caries-Like Dentin Lesions

机译:龋齿样牙本质病变下低收缩率复合树脂的底漆粘合剂和复合树脂光聚合过程中的温度升高

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摘要

Objective. This study evaluated temperature rise of low-shrinkage (LS) self-etch primer (P), LS self-etch adhesive (A), and P90 silorane-based composite resin systems, photopolymerized under normal and artificially demineralized dentin. Methods. Forty 1.5 mm-thick dentin discs were prepared from sound human molars, half of which were demineralized. Temperature rise was measured during photopolymerization using a K-type thermocouple under the discs: 10 s and 40 s irradiation of the discs (controls/groups 1 and 2); 10 s irradiation of primer (P), 10 s irradiation of adhesive (A), 40 s irradiation of P90 without P and A, and 40 s irradiation of P90 with P and A (groups 3 to 6, resp.). The samples were photopolymerized using an LED unit under 550 mW/cm2 light intensity. Data was analyzed using repeated measures ANOVA and paired-sample t-test (α = 0.05). Results. There were no significant differences in temperature rise means between the two dentin samples for each irradiation duration (P > 0.0001), with significant differences between the two irradiation durations (P > 0.0001). Temperature rise measured with 40 s irradiation was significantly higher than that of 10 s duration for undemineralized and demineralized dentin P < 0.0001). Conclusions. Light polymerization of P90 low-shrinkage composite resin resulted in temperature rise approaching threshold value under artificially demineralized and undemineralized dentin.
机译:目的。这项研究评估了低收缩率(LS)自蚀刻底漆(P),LS自蚀刻胶粘剂(A)和P90硅氧烷基复合树脂体系的温度升高情况,这些体系在正常和人工脱矿的牙本质下进行光聚合。方法。用健全的人类臼齿制备了40个1.5毫米厚的牙本质牙盘,其中一半已脱矿质。在光聚合过程中,使用K型热电偶在圆盘下测量温度升高:圆盘照射10 s和40 s(对照组/第1组和第2组);底漆(P)照射10 s,胶粘剂(A)照射10 s,不含P和A的P90照射40 s,P和A的P90照射40 s(分别为3-6组)。使用LED单元在550 mW / cm 2 光强度下对样品进行光聚合。使用重复测量方差分析和配对样本t检验(α= 0.05)分析数据。结果。对于每个照射持续时间,两个牙本质样品之间的升温均值没有显着差异(P> 0.0001),并且在两个照射持续时间之间,P值均不存在显着差异(P> 0.0001)。对于未脱矿质和脱矿质的牙本质,在40 s辐射下测得的温升明显高于10s持续时间(P <0.0001)。结论。 P90低收缩率复合树脂的轻度聚合导致在人工脱盐和脱矿的牙本质下温度升高接近阈值。

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