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首页> 外文期刊>Magnetics, IEEE Transactions on >Numerical Analysis of Electromagnetically Induced Heating and Bioheat Transfer for Magnetic Fluid Hyperthermia
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Numerical Analysis of Electromagnetically Induced Heating and Bioheat Transfer for Magnetic Fluid Hyperthermia

机译:电磁流体热疗电磁感应加热和生物热传递的数值分析

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In this paper, we study the computational modeling of electromagnetically induced heating in magnetic fluid hyperthermia. Owing to the Brownian rotation and Neel relaxation of induced magnetic moments, ferrofluids can generate heat when exposed to an alternating current magnetic field. To destroy all tumors cells while preventing deleterious physiological responses, input parameters such as the frequency and intensity of magnetic fields and the complex susceptibility of ferrofluids should be determined precisely. In this paper, a solution to Maxwell’s equation for a model of a tumor and its neighboring tissues are coupled as input to Penne’s bioheat equation. Both sets of equations are solved using the finite element analysis method with perfectly matched layers for isothermal boundary conditions in COMSOL. We use a bilayered spherical model with blood perfusion and metabolism to simulate the temperature distribution in tumor regions during hyperthermia therapy. Power density due to electromagnetic field simulation serves as input to the bioheat transfer equation and determines the heat generated by the ferrofluids. The obtained results indicate that tumor regions are heated without adversely affecting healthy regions.
机译:在本文中,我们研究了磁流体热疗中电磁感应加热的计算模型。由于布朗旋转和感应磁矩的Neel弛豫,铁磁流体在暴露于交流磁场时会产生热量。为了在防止有害的生理反应的同时破坏所有肿瘤细胞,应精确确定输入参数,例如磁场的频率和强度以及铁磁流体的复杂磁化率。在本文中,将Maxwell方程的一个肿瘤及其邻近组织模型的解决方案耦合为Penne的生物热方程的输入。两组方程都是使用有限元分析方法求解的,其中在COMSOL中等温边界条件具有完美匹配的层。我们使用具有血液灌注和代谢功能的双层球形模型来模拟高温治疗期间肿瘤区域的温度分布。由于电磁场模拟而产生的功率密度用作生物热传递方程的输入,并确定铁磁流体产生的热量。获得的结果表明,肿瘤区域被加热而对健康区域没有不利影响。

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