一种低收缩复合树脂光聚合在类龋牙本质损伤下的底漆、粘合剂和复合树脂的温升。

ISRN dentistry Pub Date : 2012-01-01 Epub Date: 2012-12-24 DOI:10.5402/2012/198351
Sayed-Mostafa Mousavinasab, Maryam Khoroushi, Mohammadreza Moharreri
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引用次数: 8

摘要

目标。本研究评估了低收缩(LS)自蚀底漆(P)、LS自蚀胶粘剂(A)和P90硅烷基复合树脂体系在正常和人工脱矿牙本质下光聚合的温升。方法。用正常的人磨牙制备了40个1.5 mm厚的牙本质盘,其中一半进行了脱矿处理。使用k型热电偶在圆盘下测量光聚合过程中的温升:圆盘照射10 s和40 s(对照组/ 1组和2组);引物(P)辐照10 s,胶粘剂(A)辐照10 s,不加P和A的P90辐照40 s,加P和A的P90辐照40 s(组3 ~组6)。样品在550 mW/cm(2)光强下使用LED单元进行光聚合。资料分析采用重复测量方差分析和配对样本t检验(α = 0.05)。结果。两种牙本质样品在不同辐照时间下的温升均值差异不显著(P > 0.0001),两种辐照时间下的温升均值差异显著(P > 0.0001)。脱矿和未脱矿牙本质辐照时间为40 s时的温升明显高于10 s (P < 0.0001)。结论。P90低收缩复合树脂在人工脱矿和不脱矿条件下的温升接近阈值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Temperature Rise during Primer, Adhesive, and Composite Resin Photopolymerization of a Low-Shrinkage Composite Resin under Caries-Like Dentin Lesions.

Temperature Rise during Primer, Adhesive, and Composite Resin Photopolymerization of a Low-Shrinkage Composite Resin under Caries-Like Dentin Lesions.

Temperature Rise during Primer, Adhesive, and Composite Resin Photopolymerization of a Low-Shrinkage Composite Resin under Caries-Like Dentin Lesions.

Temperature Rise during Primer, Adhesive, and Composite Resin Photopolymerization of a Low-Shrinkage Composite Resin under Caries-Like Dentin Lesions.

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/cm(2) 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.

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