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In Vitro investigation of heat transfer in human tooth

机译:人体牙齿传热的体外研究

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The understanding of heat transfer in human teeth is important for optimizing clinical practice protocols and daily intake instructions. However, it is technically challenging to study the in vitro thermal behavior of human tooth due to its small size and complex biological/geometrical structure. The currently widely used method is based on thermocouples, which has several limitations such as low spatial resolution, contact measurement and, in particular, lack of whole-field information. To address these challenges, an experimental system was developed to measure the whole-field temperature distribution in human tooth in vitro. The human tooth sample was heated at the tooth crown with flowing hot water (60 °C) for 10 s and then cooled down by natural convection of air. The temperature of the whole sectioned sample surface was recorded using an infrared camera. The results demonstrate that the developed system is capable of measuring temperature evolution in small human tooth samples. The biological junction of tooth (e.g., dental-enamel junction) is shown to have great influence on its heat transfer behavior. The present study could open the door for several future applications, e.g., systemic investigation of heat transfer in intact/restored tooth heated with clinical methods for treatment optimization, and measurement of thermal properties for different tooth layers.
机译:理解人牙齿中的传热对于优化临床实践方案和每日摄入量指导很重要。然而,由于人类牙齿的小尺寸和复杂的生物学/几何结构,研究其在体外的热行为在技术上具有挑战性。当前广泛使用的方法是基于热电偶的,该方法具有多个局限性,例如空间分辨率低,接触测量以及特别是缺乏全场信息。为了解决这些挑战,开发了一个实验系统来测量体外人牙的全场温度分布。用流动的热水(60°C)在人的牙冠上加热人类牙齿样品10秒钟,然后通过空气的自然对流将其冷却。使用红外照相机记录整个切片的样品表面的温度。结果表明,开发的系统能够测量小型人牙样品中的温度变化。牙齿的生物连接(例如,牙釉质连接)显示出对其传热行为有很大的影响。本研究可以为未来的一些应用打开大门,例如,对使用临床方法进行加热处理以优化治疗的完整/修复牙齿的传热进行系统研究,以及测量不同牙齿层的热性能。

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