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首页> 外文期刊>Journal of Nanoparticle Research >Theoretical evaluations of magnetic nanoparticle-enhanced heating on tumor embedded with large blood vessels during hyperthermia
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Theoretical evaluations of magnetic nanoparticle-enhanced heating on tumor embedded with large blood vessels during hyperthermia

机译:高温期间磁性纳米颗粒增强对大血管包埋的肿瘤的加热的理论评估

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摘要

The large blood vessels surrounding the tumor would significantly result in heat sink, and thus seriously limit the thermal ablative area during tumor hyperthermia. Magnetic nanoparticle (MNP) was recently identified as an important heating enhancer to improve the treatment efficiency. It will not only help to absorb more energy under the irradiation of external magnetic field, but also can block the blood flow and subsequently weaken the heat sink effect of large vessels. In this study, these two critical factors, reserved to be undisclosed before in theory, were comprehensively investigated through three-dimensional numerical simulation. The results suggested that concerning the contribution to temperature increase in the tissues surrounding large vessel, the factor of blood flow blocking is more effective than that of energy absorption. Therefore, selective loading of MNPs to the target sites is expected to serve as a promising method to perform successful hyperthermia treatment for tumor tissues embedded with large blood vessels.
机译:肿瘤周围的大血管将明显导致散热,从而严重限制了肿瘤热疗期间的热消融区域。磁性纳米颗粒(MNP)最近被确定为提高治疗效率的重要加热促进剂。它不仅有助于在外部磁场的照射下吸收更多的能量,而且可以阻止血液流动,从而削弱大血管的散热效果。在本研究中,通过三维数值模拟对这两个关键因素进行了全面的研究,而这两个关键因素在理论上尚未被公开。结果表明,关于大血管周围组织温度升高的贡献,阻塞血流的因素比吸收能量更有效。因此,预期将MNP选择性装载到靶位点将成为有前途的方法,以成功地对嵌入大血管的肿瘤组织进行高温治疗。

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