首页> 外文期刊>Journal of dentistry >Influence of the degree of dentine mineralization on pulp chamber temperature increase during resin-based composite (RBC) light-activation.
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Influence of the degree of dentine mineralization on pulp chamber temperature increase during resin-based composite (RBC) light-activation.

机译:树脂基复合材料(RBC)光活化过程中牙本质矿化程度对纸浆室温度升高的影响。

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OBJECTIVES: To analyse the influence of the degree of dentine mineralization on the pulp chamber temperature increase during composite light-activation. METHODS: Dentine discs (2mm thick) obtained from recently extracted teeth or those with extensive dentine sclerosis were analysed by FT-IR spectrometry in order to choose the two discs with the greatest difference in the degree of mineralization. A model tooth was set up with the dentine discs between a molar with the pulp chamber exposed and a crown with a standardized class II cavity. A K-type thermocouple was introduced into the molar root until it came into contact with the dentine discs and the cavity was filled with P60 resin composite. The temperature rise was measured for 120s after light-activation began: Standard (S) 600 mW/cm(2)/40s; Ramp (R) 0-->800 mW/cm(2)/10s+800 mW/cm(2)/10s; Boost (B) 85 0mW/cm(2)/10s and LED (L) 1.300 mW/cm(2)/40s (n=10). The same protocol was repeated after grinding the dentine discs to 1.0 and 0.5mm thickness. RESULTS: The temperature increase was significantly higher in dentine with high degree of mineralization (p<0.05). With respect to the dentine thickness, the following result was found: 2mm<1mm<0.5mm (p<0.05). The light-activation mode also presented significant difference as follows: S>R=L>B (p<0.05). CONCLUSIONS: The higher the degree of dentine mineralization the greater the increase in pulp chamber temperature. The temperature increase was influenced by the light-polymerization mode and dentine thickness.
机译:目的:分析复合光激活过程中牙本质矿化程度对牙髓腔温度升高的影响。方法:通过FT-IR光谱分析从最近拔出的牙齿或具有广泛的牙本质硬化症的牙齿获得的牙本质牙盘(2mm厚),以选择矿化程度差异最大的两个牙髓。用牙本质盘在暴露牙髓腔的磨牙和具有标准II类腔的牙冠之间设置牙本质模型牙。将K型热电偶引入磨牙牙根,直到其与牙本质牙盘接触,并在腔体中填充P60树脂复合材料。在光激活开始后,测量了120s的温升:标准(S)600 mW / cm(2)/ 40s;斜坡(R)0-> 800 mW / cm(2)/ 10s + 800 mW / cm(2)/ 10s;升压(B)85 0mW / cm(2)/ 10s和LED(L)1.300 mW / cm(2)/ 40s(n = 10)。将牙本质磨盘研磨至1.0和0.5mm的厚度后,重复相同的步骤。结果:牙本质矿化度高时,牙本质的温度升高明显更高(p <0.05)。关于牙本质厚度,发现以下结果:2mm <1mm <0.5mm(p <0.05)。光活化模式也表现出如下显着差异:S> R = L> B(p <0.05)。结论:牙本质矿化程度越高,浆腔温度的升高幅度越大。温度的升高受光聚合模式和牙本质厚度的影响。

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