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首页> 外文期刊>Ingenieria y Ciencia >A Guide to Study Iron Oxide Magnetic Nanoparticles with Biomedical Applications. Part II
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A Guide to Study Iron Oxide Magnetic Nanoparticles with Biomedical Applications. Part II

机译:生物医学应用研究氧化铁磁性纳米粒子的指南。第二部分

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In this second part, the magnetic nanoparticles characterization is studied, doing special emphasys in the properties interpretation in order to define the nanosystems applications. In the case of the iron oxide magnetic nanoparticles, the influence of its properties in the heat dissipation under radiofrequency fields is analyzed, this answer is usefull in the cancer treatment by magnetic hyperthermia. In the magnetic hyperthermia treatment, particles absorb energy from a radio frequency magnetic field and dissipate it as heat. For in-vivo test and human assays, frequency ranges between 50 and 1000 kHz and field amplitudes ranges between 5 and 150 kHz are usually used. The main properties, such as magnetization, interactions between particles and particles structuring are studied using experimental data, computational simulations and suitable models for each case studied in the part I of this article. Finally, a correlationbetween these properties with heat dissipation, measured by calorimetric methods, which is the merit parameter to quantify the electromagnetic energy transduction into heat, is pointed out.
机译:在第二部分中,将研究磁性纳米粒子的表征,并在属性解释中进行特殊的强调,以定义纳米系统的应用。在氧化铁磁性纳米粒子的情况下,分析了其性质对射频场下散热的影响,该答案对于通过磁性热疗治疗癌症有用。在磁热疗中,颗粒吸收射频磁场中的能量并将其作为热量消散。对于体内测试和人体分析,通常使用50至1000 kHz之间的频率范围和5至150 kHz之间的场振幅范围。使用实验数据,计算模拟和本文第一部分研究的每种情况的合适模型,研究了诸如磁化强度,颗粒之间的相互作用以及颗粒结构的主要特性。最后,指出了通过量热法测量的这些性质与散热之间的相关性,这是量化电磁​​能转换成热量的优值参数。

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