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首页> 外文期刊>Operative dentistry >Temperature Increase at the Light Guide Tip of 15 Contemporary LED Units and Thermal Variation at the Pulpal Floor of Cavities: An Infrared Thermographic Analysis.
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Temperature Increase at the Light Guide Tip of 15 Contemporary LED Units and Thermal Variation at the Pulpal Floor of Cavities: An Infrared Thermographic Analysis.

机译:15个当代LED装置的光导尖端处的温度升高以及腔体底部的热变化:红外热像分析。

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SUMMARY In this study, a comprehensive investigation on the temperature increase at the light guide tip of several commercial light-emitting diode (LED) light-curing units (LCUs) and the associated thermal variation (ΔT) at the pulpal floor of dental cavities was carried out. In total, 15 LEDs from all generations were investigated, testing a quartz-tungsten-halogen (QTH) unit as a reference. The irradiance level was measured with a power meter, and spectral distribution was analyzed using a spectrometer. Temperature increase at the tip was measured with a type-K thermocouple connected to a thermometer, while ΔT at the pulpal floor was measured by an infrared photodetector in class V cavities, with a 1-mm-thick dentin pulpal floor. The relationship among measured irradiance, ΔT at the tip, and ΔT at the pulpal floor was investigated using regression analyses. Large discrepancies between the expected and measured irradiances were detected for some LCUs. Most of the LCUs showed an emission spectrum narrower than the QTH unit, with emission peaks usually between 450 and 470 nm. The temperature increase at the tip followed a logarithmic growth for LCUs with irradiance ≥1000 mW/cm(2), with ΔT at the tip following the measured irradiance linearly (R(2)=0.67). Linear temperature increase at the pulpal floor over the 40-second exposure time was observed for several LCUs, with linear association between ΔT at the pulpal floor and measured irradiance (R(2)=0.39) or ΔT at the tip (R(2)=0.28). In conclusion, contemporary LED units show varied irradiance levels that affect the temperature increase at the light guide tip and, as a consequence, the thermal variation at the pulpal floor of dental cavities.
机译:发明内容在本研究中,对几个商用发光二极管(LED)光固化单元(LCU)的光导尖端处的温度升高以及牙腔牙髓底处的相关热变化(ΔT)进行了全面研究。执行。总共研究了15个各代LED,并测试了石英-钨-卤素(QTH)单元作为参考。用功率计测量辐照度水平,并使用分光计分析光谱分布。尖端温度的升高是通过与温度计相连的K型热电偶测量的,而牙髓底部的ΔT是通过红外光电探测器在V级腔中测量的,牙本质厚度为1毫米。使用回归分析研究了测得的辐照度,尖端的ΔT和牙髓底的ΔT之间的关系。对于某些LCU,检测到的预期辐照度与实测辐照度之间存在较大差异。大多数LCU的发射光谱都比QTH单元窄,发射峰通常在450至470 nm之间。对于辐照度≥1000mW / cm(2)的LCU,尖端温度随对数增长而变化,尖端的ΔT线性地遵循所测辐照度(R(2)= 0.67)。对于多个LCU,在40秒的暴露时间下,果肉地板的线性温度升高得到观察到,果肉地板的ΔT与测得的辐照度(R(2)= 0.39)或尖端的ΔT(R(2)之间呈线性关联= 0.28)。总之,现代的LED单元显示出不同的辐照度,这些辐照度会影响光导尖端处的温度升高,从而影响牙腔牙髓底处的热变化。

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