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LED Curing Lights and Temperature Changes in Different Tooth Sites

机译:LED固化灯和不同齿部位的温度变化

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Objectives. The aim of this in vitro study was to assess thermal changes on tooth tissues during light exposure using two different LED curing units. The hypothesis was that no temperature increase could be detected within the dental pulp during polymerization irrespective of the use of a composite resin or a light-curing unit. Methods. Caries-free human first molars were selected, pulp residues were removed after root resection, and four calibrated type-J thermocouples were positioned. Two LED lamps were tested; temperature measurements were made on intact teeth and on the same tooth during curing of composite restorations. The data was analyzed by one-way analysis of variance (ANOVA), Wilcoxon test, Kruskal-Wallis test, and Pearson's chi~2. After ANOVA, the Bonferroni multiple comparison test was performed. Results. Polymerization data analysis showed that in the pulp chamber temperature increase was higher than that without resin. Starlight PRO, in the same condition of Valo lamp, showed a lower temperature increase in pre- and intrapolymerization. A control group (without composite resin) was evaluated. Significance. Temperature increase during resin curing is a function of the rate of polymerization, due to the exothermic polymerization reaction, the energy from the light unit, and time of exposure.
机译:目标。这种体外研究的目的是在使用两种不同的LED固化单元的光曝光期间评估牙齿组织的热变化。假设是,无论使用复合树脂或光固化单元,聚合过程中都不会在牙科纸浆中检测到温度升高。方法。选择无龋的人的第一磨牙,在根切除后除去纸浆残留物,并定位四种校准的J型热电偶。测试了两个LED灯;在固化复合修复后,在完整的牙齿和同一牙齿上进行温度测量。通过单向分析(ANOVA),WILCOXON测试,Kruskal-Wallis测试和Pearson的Chi〜2分析数据。在ANOVA之后,进行Bonferroni多重比较测试。结果。聚合数据分析表明,在纸浆室温度升高比没有树脂的情况下。星光专业人在相同的valo灯条件下,预先和吸油中的温度较低。评价对照组(无复合树脂)。意义。树脂固化期间的温度升高是聚合速率的函数,由于放热聚合反应,来自光单元的能量和暴露的时间。

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