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首页> 外文期刊>Progress in Biophysics and Molecular Biology: An International Review Journal >Physics responsible for heating efficiency and self-controlled temperature rise of magnetic nanoparticles in magnetic hyperthermia therapy
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Physics responsible for heating efficiency and self-controlled temperature rise of magnetic nanoparticles in magnetic hyperthermia therapy

机译:负责磁体热疗治疗中磁性纳米粒子的加热效率和自控温度升高的物理学

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摘要

Magnetic nanoparticles as heat-generating nanosources in hyperthermia treatment are still faced with many drawbacks for achieving sufficient clinical potential. In this context, increase in heating ability of magnetic nanoparticles in a biologically safe alternating magnetic field and also approach to a precise control on temperature rise are two challenging subjects so that a significant part of researchers' efforts has been devoted to them. Since a deep understanding of Physics concepts of heat generation by magnetic nanoparticles is essential to develop hyperthermia as a cancer treatment with non-adverse side effects, this review focuses on different mechanisms responsible for heat dissipation in a radio frequency magnetic field. Moreover, particular attention is given to ferrite-based nanoparticles because of their suitability in radio frequency magnetic fields. Also, the key role of Curie temperature in suppressing undesired temperature rise is highlighted. (C) 2017 Elsevier Ltd. All rights reserved.
机译:磁性纳米粒子作为热疗纳米源在热疗治疗中仍面临许多缺点,用于实现足够的临床潜力。在这种情况下,在生物安全交流磁场中的磁性纳米粒子的加热能力的增加以及对温度升高的精确控制的方法是两个具有挑战性的科目,因此研究人员的努力已经致力于它们。由于对磁性纳米颗粒的热量产生的物理概念深入了解,对于具有非不良副作用的癌症治疗,因此对癌症治疗产生了极大的影响,因此侧重于负责射频磁场中散热的不同机制。此外,由于它们在射频磁场中的适用性,特别注意的基于铁氧体基纳米颗粒。此外,突出了静脉温度在抑制不希望的温度上升时的关键作用。 (c)2017 Elsevier Ltd.保留所有权利。

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