首页> 外文期刊>Journal of nanoscience and nanotechnology >Hyperthermia Temperature of Magnetic Fluid with Superparamagnetic Nanoparticles Subjected to an Alternating Magnetic Field
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Hyperthermia Temperature of Magnetic Fluid with Superparamagnetic Nanoparticles Subjected to an Alternating Magnetic Field

机译:具有交替磁场的超顺磁纳米颗粒的磁性流体的高温温度

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摘要

This paper conducts the thermal analysis of magnetic fluid with superparamagnetic nanoparticles subjected to an alternating magnetic field. Magnetic fluid hyperthermia (MFH) provides a potential method for cancer treatment, which has fewer side effects than chemotherapy and radiotherapy. Superparamagnetic nanoparticles dispersed in water are suitable for safe application of MFH. A well-defined hyperthermia should only kill the cancer cells without injuring neighbouring normal tissue. A key factor for hyperthermia is to correctly control the alternating magnetic field-induced temperature of the magnetic fluid in the tumour. Therefore, this study develops a thermal transport model combined with a linear response theory of magnetic nanoparticle (MNP) heat dissipation to analyze the effects of parameters on temperatures in the magnetic fluid with superparamagnetic nanoparticles subjected to an alternating magnetic field. The results predicted by this model are compared with the available experimental data and show that the rise rates of temperature with time and temperatures along the radial direction are enhanced by the increase of MNP concentrations in magnetic fluid, the amplitude of magnetic field strength, frequency, and magnetization.
机译:本文对磁性流体进行了经受交替磁场的超顺磁纳米粒子进行了热分析。磁性流体热疗(MFH)提供了癌症治疗的潜在方法,其副作用比化疗和放射疗法更少。分散在水中的超顺磁纳米颗粒适用于安全施用MFH。明确明确的热疗应该只杀死癌细胞而不损伤相邻的正常组织。热疗的关键因素是正确地控制肿瘤中磁性流体的交替磁场诱导的温度。因此,该研究开发了热传输模型与磁纳米粒子(MNP)散热的线性响应理论结合,分析了参数对磁性流体中的温度的影响,其具有交替磁场的超顺磁纳米粒子。将该模型预测的结果与可用的实验数据进行比较,并表明,通过磁流体中的MNP浓度的增加,磁场强度,频率,频率,频率,频率,频率,频率,频率,频率,和磁化。

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