Alternating Magnetic Field Coils Optimization for Magnetic Nanoparticles Hyperthermia

A. Nour, F. Shubitidze
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引用次数: 1

Abstract

Cancer is one of the deadliest diseases in this era. Currently many researchers from different fields are collaborating to find an optimum cure. One of the treatment methods involves the use of Magnetic Nanoparticles Hyperthermia (MNPH). This involves the insertion of Magnetic Nanoparticles (MNPs) at cancerous tumors locations and using an external current carrying coil to apply an alternating magnetic field (AMF) that would activate the MNPs located inside the tumor tissues. In return, the activation of the MNPs would result in concentrated heat at tumor locations, which can be intense enough to destroy tumor tissues. Alternating magnetic fields means also the introduction of electric field, which results in eddy currents at surrounding healthy tissues. The resulted eddy currents produce unwanted heat and damage the surrounding healthy tissues especially when high currents (up to several hundred Amps) is used to deliver the required AMF intensity for deep tissues tumors. This paper presents a full computational and graphical electromagnetic study of a real human model. Specific absorption rates (SARs) are computed and presented across different tissues in the body with different coil configurations. The optimum coil configuration with the maximum AMF at the pancreatic tumor injected MNPs and minimum eddy currents on surrounding healthy tissues was deduced.
磁纳米颗粒热疗的交变磁场线圈优化
癌症是这个时代最致命的疾病之一。目前,来自不同领域的许多研究人员正在合作寻找最佳治疗方法。其中一种治疗方法是使用磁性纳米颗粒热疗(MNPH)。这包括将磁性纳米颗粒(MNPs)插入癌变肿瘤部位,并使用外部载流线圈施加交变磁场(AMF),以激活位于肿瘤组织内的磁性纳米颗粒。反过来,MNPs的激活将导致肿瘤部位的集中热量,其强度足以破坏肿瘤组织。交变磁场也意味着电场的引入,这会在周围的健康组织中产生涡流。所产生的涡流产生不必要的热量,并损害周围的健康组织,特别是当使用高电流(高达几百安培)为深部组织肿瘤提供所需的AMF强度时。本文提出了一个完整的计算和图形电磁研究一个真实的人体模型。特定吸收率(SARs)计算和呈现在不同的组织在不同的线圈配置的身体。推导出胰腺肿瘤注入MNPs处AMF最大、周围健康组织涡流最小的最佳线圈构型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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