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Pulpal temperature rise: Evaluation after light activation of newer pulp-capping materials and resin composite

机译:扶手温度升高:较新的纸浆覆盖材料和树脂复合材料的光激活后评价

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Background: To evaluate temperature changes in pulp chamber during light activation of newer pulp- capping materials and composite resin using light-emitting diode. Materials and Methods: A standardized Class I cavity was prepared in 80 extracted, intact, noncarious mandibular first molars, keeping remaining dentin thickness of 0.5 mm. The teeth were divided into four groups of 20 teeth each. Following this, apical third of the mesial root of each tooth was cut and a K type thermocouple attached to digital thermometer was inserted into pulp chamber from the sectioned mesial root. Whole assembly with teeth was suspended in water bath with constant temperature at 37°C. The previously divided teeth in four groups, were lined with Calcimol LC (Group A), Activa (Group B), TheraCal LC (Group C), and Ionoseal (Group D), followed by 3 increments of Filtek Z350 × T universal restorative. The temperature rise following light activation of pulp-capping material, bonding agent, and composite was noted. Results: The temperature rise in the pulp chamber after light activation of Activa was highest among all pulp-capping materials, followed by teeth lined with Calcimol LC, Ionoseal, and least in teeth with TheraCal LC. Conclusions: Temperature rise in the pulp chamber after light activation of newer pulp-capping materials and composite was below critical threshold for irreversible pulpal damage. Among all the pulp-capping materials, TheraCal LC showed lowest temperature rise in pulp chamber.
机译:背景:使用发光二极管在较新的纸浆材料和复合树脂的光活化期间评估纸浆室中的温度变化。材料和方法:标准化的I类腔在80中制备了80个提取的,完整,无义的下颌的第一磨牙,保持剩余的牙本质厚度为0.5mm。牙齿分为四组20颗牙齿。在此之后,切割每个牙齿的间隙的顶端三分之一,并将连接到数字温度计的K型热电偶插入从切片的薄层根部的纸浆室中。用牙齿的全部组装在水浴中,在37℃下恒温悬浮在水浴中。以四组的先前分开的牙齿含有钙锁LC(A),Activa(B组),治疗LC(C组)和Ionoseal(D组),其次是FILTEK Z350×T通用修复的3个增量。注意到在浆覆盖材料,粘合剂和复合材料的光活化之后的温度升高。结果:在所有纸浆封端材料中,在Activa的光活化后的纸浆室中的温度升高,其次是用治疗LC的钙粉Lc,Ionoseal和至少牙齿内衬的牙齿。结论:在较新的纸浆封端材料的光激活后纸浆室中的温度升高,复合材料低于不可逆转牙髓损伤的临界阈值。在所有纸浆封端材料中,治疗LC在纸浆室中显示出最低的温度升高。

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