Zhu Kai, Li Yan, Zou Jin, Wei Fan, Wang Yi, Kang Liyuan, Li Yuhong
Department of Thermal Engineering, Tianjin University, Tianjin 300072.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2003 Sep;20(3):455-9.
Bio-heat transfer in the tongue body is studied combining the mechanism of tongue inspection in Traditional Chinese Medicine. Parameters such as the temperature of lingual surface, the blood perfusion of the dog's tongue and so on are measured and the influences of the blood perfusion, the arterial blood temperature, the arterial cross-sectional areas and positions on the temperature distribution in the cross-sections are studied. Then the two-dimensional temperature fields in different cross-sections are numerically solved by the finite element method (FEM). The results show that the vascular cross-sectional areas vary with the elasticity change of the vessel walls resulting from the variation of the blood perfusion. And the temperature distribution in the cross-section mainly depends on the arterial cross-sectional areas and positions. The results can help to analyze the bio-heat transfer characteristic of the tongue. According to this method, the sectional temperature fields in whatever place of the tongue can be calculated under different blood perfusion and on the condition that the influence of the venous blood temperature on the temperature field of the tongue is considered. We can further probe into the relationship between the temperature fields of the lingual surface and that of cross-sections. This can provide the foundation for further investigation into the bio-heat transfer mechanism and the calculation on three-dimensional temperature fields of the tongue.
结合中医舌诊机理,研究了舌体的生物传热问题。测量了舌面温度、犬舌血液灌注等参数,研究了血液灌注、动脉血温度、动脉横截面积和位置对横断面温度分布的影响。然后采用有限元方法(FEM)数值求解不同横断面的二维温度场。结果表明,血管横截面积随血液灌注变化引起的血管壁弹性变化而变化。横断面的温度分布主要取决于动脉横截面积和位置。研究结果有助于分析舌体的生物传热特性。根据该方法,在考虑静脉血温度对舌体温度场影响的条件下,可计算不同血液灌注情况下舌体任意位置的断面温度场。我们可以进一步探究舌面温度场与横断面温度场之间的关系。这可为进一步研究舌体生物传热机理及三维温度场计算提供基础。