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Numerical simulation of heat transfer for the treatment of in-stent restenosis with a heatable metal stent

机译:可加热金属支架治疗支架内再狭窄的传热数值模拟

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Based on the analysis of biological heat transfer for the hyperthermia of in-stent restenosis (ISR) with a heating vascular stent, the three-dimension heat transfer model has been established with the N-S equation and the equation of Pennes bio-heat transfer as a mathematical model. And the three-dimension transient temperature distribution has been calculated considering the blood flow field and temperature field coupling. Simulations are performed to examine the effects of a variety of thermal parameters, such as heating power, blood flow rate and thermal conductivity on the temperature distribution in tissues. The results show that blood flow causes a significant cooling effect during the heating. The temperature distribution is sensitive to heating power and blood flow rate, but relatively insensitive to the tissue thermal conductivity.
机译:在对支架加热血管支架进行支架内再狭窄热疗的生物传热分析的基础上,建立了以NS方程和Pennes生物传热方程为维的三维传热模型。数学模型。并考虑了血流场与温度场的耦合关系,计算了三维瞬态温度分布。进行仿真以检查各种热参数的影响,例如加热功率,血液流速和热导率对组织中温度分布的影响。结果表明,在加热过程中,血流会产生明显的冷却效果。温度分布对加热功率和血液流速敏感,但是对组织的热导率相对不敏感。

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