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In vitro investigation of heat transfer phenomenon in human immature teeth

机译:人类未成熟牙齿传热现象的体外研究

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Background and aims. Heat generated within tooth during clinical dentistry can cause thermally induced damage to hard and soft components of the tooth (enamel, dentin and pulp). Geometrical characteristics of immature teeth are different from those of mature teeth. The purpose of this experimental and theoretical study was to investigate thermal changes in immature permanent teeth during the use of LED light curing units (LCU). Materials and methods. This study was performed on the second mandibular premolars. Experimental investigation was carried out for recording temperature variations of different sites of tooth and two dimensional finite element models were used for heat transfer phenomenon in immature teeth. Sensitivity analysis and local tests were included in the model validation phase. Results. Overall thermal stimulation for 30 seconds by using a low-intensity LED LCU increased the temperature from 28°C to 38°C (a 10°C increase) in IIT and PIT. When a high-intensity LED LCU was used, tooth temperature increased from 28°C to 48°C (a 20°C increase). The results of the experimental tests and mathematical modeling illustrated that using LED LCU on immature teeth did not have any detrimental effect on the pulp temperature. Conclusion. Using LED LCU in immature teeth had no effect on pulp temperature in this study. Sensitivity analysis showed that variations of heat conductivity might affect heat transfer in immature teeth; therefore, further studies are required to determine thermal conductivity of immature teeth.
机译:背景和目标。在临床牙科期间,牙齿内部产生的热量可对牙齿的硬质和软质成分(牙釉质,牙本质和牙髓)产生热致损伤。未成熟牙齿的几何特征与成熟牙齿的几何特征不同。这项实验和理论研究的目的是调查使用LED光固化单元(LCU)期间未成熟恒牙的热变化。材料和方法。这项研究是在第二个下颌前磨牙上进行的。进行了实验研究以记录牙齿不同部位的温度变化,并使用二维有限元模型来分析未成熟牙齿的传热现象。灵敏度分析和局部测试已包括在模型验证阶段。结果。通过使用低强度LED LCU进行30秒的整体热刺激,可将IIT和PIT的温度从28°C升高到38°C(增加10°C)。当使用高强度LED LCU时,牙齿温度从28°C升高到48°C(增加20°C)。实验测试和数学建模的结果表明,在未成熟的牙齿上使用LED LCU对牙髓温度没有任何有害影响。结论。在这项研究中,在未成熟的牙齿上使用LED LCU对牙髓温度没有影响。敏感性分析表明,导热系数的变化可能会影响未成熟牙齿的传热;因此,需要进一步的研究来确定未成熟牙齿的热导率。

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