Liu Kuo-Chi, Chen Tse-Min
Department of Mechanical Engineering, Far East University, 49 Chung Hua Rd., Hsin-Shih, Tainan, 744, Taiwan.
Department of Bio-Industrial Mechatronics Engineering, National Chung Hsing University, 145 Xingda Rd., South Dist., Taichung, 402, Taiwan.
J Therm Biol. 2021 May;98:102907. doi: 10.1016/j.jtherbio.2021.102907. Epub 2021 Mar 18.
Appropriate heating of the tumor can ablate tumor cells with minimal damage to healthy tissue and low side effects to the patient. Therefore, it is important to estimate power dissipation requirement and predict thermal damage in tumor before hyperthermia treatment. This work applied a mathematical model on heat transfer in two-layered spherical tissue to predict the temperature profile within hyperthermia domain. The present bioheat transfer problem was analyzed based on the Pennes equation, the thermal wave and dual-phase lag modes in order to explore the effect of analysis mode on the power dissipation requirement. The Arrenius equation, the modified thermal damage model with regeneration term, and the equivalent thermal dose equation were used to evaluate the thermal damage and discuss their effects on thermal damage prediction. The computation results show that the model of bioheat transfer and the non-Fourier effect significantly affects the power dissipation requirement. The damage parameter value predicted by the modified thermal damage model with regeneration term seems to have a limit value of Ω = 1. The results imply that the regeneration of biological tissue can prevent the tissue from thermal damage, the equivalent thermal dose equation is more related to heating time, and the Arrenius equation is more related to heating temperature.
对肿瘤进行适当加热可以消融肿瘤细胞,同时对健康组织的损伤最小,对患者的副作用也较低。因此,在热疗治疗前估计功率耗散需求并预测肿瘤中的热损伤非常重要。这项工作应用了一个关于两层球形组织热传递的数学模型来预测热疗区域内的温度分布。基于佩恩斯方程、热波和双相滞后模式对当前的生物热传递问题进行了分析,以探讨分析模式对功率耗散需求的影响。使用阿伦尼乌斯方程、带有再生项的修正热损伤模型和等效热剂量方程来评估热损伤并讨论它们对热损伤预测的影响。计算结果表明,生物热传递模型和非傅里叶效应显著影响功率耗散需求。带有再生项的修正热损伤模型预测的损伤参数值似乎有一个极限值Ω = 1。结果表明,生物组织的再生可以防止组织受到热损伤,等效热剂量方程与加热时间的关系更大,而阿伦尼乌斯方程与加热温度的关系更大。