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Analysis of the Distribution of Magnetic Fluid inside Tumors by a Giant Magnetoresistance Probe

机译:巨磁阻探针分析肿瘤内部磁性流体的分布

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摘要

Magnetic fluid hyperthermia (MFH) therapy uses the magnetic component of electromagnetic fields in the radiofrequency spectrum to couple energy to magnetic nanoparticles inside tumors. In MFH therapy, magnetic fluid is injected into tumors and an alternating current (AC) magnetic flux is applied to heat the magnetic fluid- filled tumor. If the temperature can be maintained at the therapeutic threshold of 42°C for 30 minutes or more, the tumor cells can be destroyed. Analyzing the distribution of the magnetic fluid injected into tumors prior to the heating step in MFH therapy is an essential criterion for homogenous heating of tumors, since a decision can then be taken on the strength and localization of the applied external AC magnetic flux density needed to destroy the tumor without affecting healthy cells. This paper proposes a methodology for analyzing the distribution of magnetic fluid in a tumor by a specifically designed giant magnetoresistance (GMR) probe prior to MFH heat treatment. Experimental results analyzing the distribution of magnetic fluid suggest that different magnetic fluid weight densities could be estimated inside a single tumor by the GMR probe.
机译:磁流体热疗(MFH)治疗利用射频频谱中电磁场的磁性成分将能量耦合到肿瘤内部的磁性纳米粒子。在MFH治疗中,将磁性流体注入肿瘤中,并施加交流(AC)磁通量来加热充满磁性流体的肿瘤。如果温度可以在42°C的治疗阈值下保持30分钟或更长时间,则肿瘤细胞可以被破坏。分析MFH治疗中加热步骤之前注入到肿瘤中的磁性流体的分布是均匀加热肿瘤的基本标准,因为这样就可以决定所需的施加的外部AC磁通密度的强度和位置。破坏肿瘤而不影响健康细胞。本文提出了一种在MFH热处理之前通过专门设计的巨磁电阻(GMR)探针分析肿瘤中磁性流体分布的方法。分析磁流体分布的实验结果表明,可以通过GMR探针估算单个肿瘤内部的不同磁流体重量密度。

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