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Quantitative comparison of optimized nanorods, nanoshells and hollow nanospheres for photothermal therapy

机译:用于光热疗法的优化纳米棒,纳米壳和空心纳米球的定量比较

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The purpose of this study is to get more efficient gold nanoparticles, for necrosis of cancer cells, in photothermal therapy. Therefore a numerical maximization of the absorption efficiency of a set of nanoparticles (nanorod, nanoshell and hollow nanosphere) is proposed, assuming that all the absorbed light is converted to heat. Two therapeutic cases (shallow and deep cancer) are considered. The numerical tools used in this study are the full Mie theory, the discrete dipole approximation and the particle swarm optimization. The optimization leads to an improved efficiency of the nanoparticles compared with previous studies. For the shallow cancer therapy, the hollow nanosphere seems to be more efficient than the other nanoparticles, whereas the hollow nanosphere and nanorod, offer comparable absorption efficiencies, for deep cancer therapy. Finally, a study of tolerance for the size parameters to guarantee an absorption efficiency threshold is included.
机译:这项研究的目的是在光热疗法中获得更有效的金纳米颗粒,用于癌细胞的坏死。因此,假设所有吸收的光都转化为热,则提出了一组纳米颗粒(纳米颗粒,纳米壳和空心纳米球)的吸收效率的数值最大化。考虑了两个治疗病例(浅和深癌)。本研究中使用的数值工具是完整的Mie理论,离散偶极近似和粒子群优化。与先前的研究相比,该优化导致纳米颗粒的效率提高。对于浅层癌症治疗,中空纳米球似乎比其他纳米颗粒更有效,而中空纳米球和纳米棒为深层癌症治疗提供了相当的吸收效率。最后,包括对尺寸参数公差的研究,以确保吸收效率阈值。

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