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Analysis of electromagnetic heating in magnetic fluid deep hyperthermia

机译:磁流体深部高温中的电磁加热分析

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In this paper, we describe the numerical modeling of magnetically induced heating of tissues in magnetic fluid deep hyperthermia. When placed in sinusoidal varying electromagnetic field, the Brownian particle rotation and Néel relaxation mechanisms induce in ferrofluid heat generation. In order to destroy tumors cells while preventing healthy tissues, such parameters as susceptibility of nanoparticles, exciting current parameters and intensity of magnetic fields should be calculated precisely. In this publication, coupled field problem resulting from Maxwell's equation and Penne's bioheat equation is discussed. Both sets of equations are solved using the finite element analysis method. We use a simplified model of human thorax with blood perfusion mechanism and tumor placed in it. Heat generation source in tumor is obtained by ferromagnetic nanoparticles. Magnetic and temperature field distribution is discussed in context of optimal tumor treatment.
机译:在本文中,我们描述了磁流体深层热疗中组织的磁感应加热的数值模型。当置于正弦变化的电磁场中时,布朗粒子旋转和Ne'el弛豫机制会诱发铁磁流体的发热。为了在保护健康组织的同时破坏肿瘤细胞,应该精确地计算出诸如纳米粒子的磁化率,励磁电流参数和磁场强度等参数。在该出版物中,讨论了由麦克斯韦方程和潘尼的生物热方程引起的耦合场问题。两组方程均使用有限元分析法求解。我们使用具有血液灌注机制和肿瘤的简化的人类胸腔模型。肿瘤中的热量产生源是通过铁磁性纳米粒子获得的。在最佳肿瘤治疗的背景下讨论了磁场和温度场分布。

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