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玻璃离子基修复材料聚合过程中乳牙髓腔温度升高。

Temperature increases in primary teeth pulp chamber during polymerization of glass ionomer-based restorative materials.

作者信息

Buyukkok Cigdem, Kaptan Arife

机构信息

Department of Pediatric Dentistry, Faculty of Dentistry,Sivas Cumhuriyet University, Sivas,Turkey.

出版信息

Eur Oral Res. 2021 Jan 4;55(1):28-33. doi: 10.26650/eor.20210024.

Abstract

PURPOSE

To evaluate the temperature changes in primary teeth pulp chambers of different dentin thicknesses during polymerization of four glass ionomer-based restorative materials.

MATERIALS AND METHODS

Eighty extracted, caries‑free, primary molars were prepared as standardized Class I occlusal cavities with dentin thicknesses of 1 mm and 2 mm. Four glass ionomerbased restorative materials, Dyract XP, Photac Fil Quick Aplicap, Fuji II LC, and GCP Glass Fill, were placed in the cavities and cured with two light-curing units. Temperature increases (initial temperature, 37°C) in the pulp chamber during polymerization were recorded by a J-type thermocouple in a pulpal microcirculation set-up. The data were analyzed with Variance analyses and Tukey tests.

RESULTS

The temperatures recorded in samples with dentin thicknesses of 1 mm and 2 mm exhibited statistically significant differences (p<0.05). The GCP Glass Fill group exhibited the highest temperature increases for both dentin thicknesses (p<0.05). The other groups were not statistically different but the Dyract XP group exhibited the least temperature change.

CONCLUSION

The highest temperature changes were observed for 1 mm dentin thickness. All temperature increases during polymerizations and setting reactions were lower than the corresponding critical values 5.5°C.

摘要

目的

评估四种玻璃离子基修复材料聚合过程中不同牙本质厚度的乳牙牙髓腔温度变化。

材料与方法

选取80颗拔除的、无龋的乳牙磨牙,制备成牙本质厚度为1mm和2mm的标准化I类咬合面洞型。将四种玻璃离子基修复材料Dyract XP、Photac Fil Quick Aplicap、Fuji II LC和GCP Glass Fill置于洞内,并用两种光固化装置进行固化。在牙髓微循环装置中,用J型热电偶记录聚合过程中牙髓腔内的温度升高(初始温度为37°C)。采用方差分析和Tukey检验对数据进行分析。

结果

牙本质厚度为1mm和2mm的样本记录的温度存在统计学显著差异(p<0.05)。对于两种牙本质厚度,GCP Glass Fill组的温度升高最高(p<0.05)。其他组无统计学差异,但Dyract XP组的温度变化最小。

结论

牙本质厚度为1mm时观察到的温度变化最高。聚合和凝固反应过程中的所有温度升高均低于相应的临界值5.5°C。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b01/8055261/3f4568a97925/eor-055-028-e001.jpg

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