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Hyperthermic effects of dissipative structures of magnetic nanoparticles in large alternating magnetic fields

机译:大交变磁场中磁性纳米粒子耗散结构的高温效应

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摘要

Targeted hyperthermia treatment using magnetic nanoparticles is a promising cancer therapy. However, the mechanisms of heat dissipation in the large alternating magnetic field used during such treatment have not been clarified. In this study, we numerically compared the magnetic loss in rotatable nanoparticles in aqueous media with that of non-rotatable nanoparticles anchored to localised structures. In the former, the relaxation loss in superparamagnetic nanoparticles has a secondary maximum because of slow rotation of the magnetic easy axis of each nanoparticle in the large field in addition to the known primary maximum caused by rapid Néel relaxation. Irradiation of rotatable ferromagnetic nanoparticles with a high-frequency axial field generates structures oriented in a longitudinal or planar direction irrespective of the free energy. Consequently, these dissipative structures significantly affect the conditions for maximum hysteresis loss. These findings shed new light on the design of targeted magnetic hyperthermia treatments.
机译:使用磁性纳米粒子的靶向热疗是一种有前途的癌症疗法。然而,在这种处理过程中使用的大交变磁场中的散热机理尚未阐明。在这项研究中,我们在数值上比较了水性介质中可旋转纳米粒子与固定在局部结构上的不可旋转纳米粒子的磁损耗。在前者中,超顺磁性纳米粒子的弛豫损失具有次要最大值,这是因为除了快速的奈尔弛豫引起的已知主要最大值之外,每个大粒子在大视野中的磁易轴的缓慢旋转。用高频轴向场辐照可旋转的铁磁纳米粒子会产生沿纵向或平面方向取向的结构,而与自由能无关。因此,这些耗散结构极大地影响了最大磁滞损耗的条件。这些发现为靶向磁热疗的设计提供了新的思路。

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