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Determination of the temperature distribution in skin using a finite element model

机译:使用有限元模型测定皮肤温度分布

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When applying noxious heat stimuli to human skin in the study of the pain system, one of the main problems is not to cause permanent damage. A better understanding of the temperature distribution and the propagation of heat, i.e. heat flux, in human skin is thus needed. In order to investigate these problems thoroughly, we have developed a 3-dimensional finite element model (FEM) 4-layer of human skin. The model is kept simple for better understanding of the boundary problems. The water content ine ach layer is used for determining the thermal properties. It is therefore not a homogeneous structure. In this model the stratum corneum has been included with lower water content than in the epidermis. Simulations shows that the surface temperature reaches high levels whereas the temperature in the deeper structure is much lower. Thermal and optical constants found in the literature was applied. Heat propagation downwards and outwards from the source has been investigated to understand of the accumulation of energy in the boundary between two layrs. Prediction of the heat flux at boundary between the epidermis and dermis shows that for repetitive stimulation there is a risk of exceeding the threshold temperature of 65 deg C for irreversible damage.
机译:在疼痛系统的研究中对人体皮肤施加有害热刺激时,其中一个主要问题是不造成永久性损害。因此,需要更好地理解温度分布和热量的传播,即热量,在人体皮肤中。为了彻底调查这些问题,我们开发了一种三维有限元模型(FEM)4层的人体皮肤。为了更好地了解边界问题,该模型保持简单。水含量ineAch层用于确定热性能。因此,它不是均匀的结构。在该模型中,Stratum Corneum已被包括较低的含水量而不是表皮。模拟表明,表面温度达到高水平,而深层结构中的温度要低得多。应用了文献中的热敏和光学常数。已经研究了从源向下和向外向外的热传播,以了解两个LAYRS之间的边界中的能量积累。对表皮和真皮之间的边界的热通量的预测表明,对于重复刺激,存在超过65℃的阈值温度的风险,以进行不可逆损伤。

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