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Tissue Model for the Study of Heat Transition During Magnetic Heating Treatment

机译:组织模型用于研究电磁加热过程中的热转移

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Heat can be induced within a tissue enriched with magnetic nanoparticles by exposing it to an alternating magnetic field. In this paper we examine the evaluation of the heat distribution and therefore the temperature development around such a heat source which can be suitable for magnetic heating treatment. We study the heat transfer from tissue enriched with magnetic nanoparticles to regions of no or minor enrichment of nanoparticles, particularly. The evaluation of the temperature distribution took place with the help of a tissue phantom. The phantom is composed of two concentric cylinders. The inner cylinder consists of a defined mixture of polyurethane gel and magnetic fluid. This cylinder represents tissue enriched with nanoparticles. The outer cylinder, which stands for pure tissue consists of polyurethane only. This tissue phantom has been exposed to an alternating magnetic field according to the protocol of the magnetic heating treatment. The temperature measurements were performed by thermocouples which are placed on defined positions. The experimentally obtained temperature data is the basis for a finite element method (FEM) simulation model. The FEM model allows the determination of heat transition from regions enriched with magnetic nanoparticles to regions with no or minor nanoparticle accumulation.
机译:通过将其暴露于交变磁场,可以在富含磁性纳米颗粒的组织内感应热量。在本文中,我们检查了热分布的评估,并因此考察了这种热源周围的温度发展情况,该热源适用于电磁加热处理。我们研究了从富含磁性纳米颗粒的组织到没有或仅有少量纳米颗粒富集区域的热传递。温度分布的评估是在组织体模的帮助下进行的。体模由两个同心圆柱体组成。内筒由聚氨酯凝胶和磁性流体的确定混合物组成。该圆柱体代表富含纳米颗粒的组织。代表纯棉纸的外筒仅由聚氨酯组成。根据磁加热治疗的方案,该组织体模已暴露于交变磁场。温度测量是通过放置在规定位置的热电偶进行的。实验获得的温度数据是有限元方法(FEM)仿真模型的基础。 FEM模型可以确定从富集磁性纳米颗粒的区域到没有或仅有少量纳米颗粒积累的区域的热转移。

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