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Improved Margins Detection of Regions Enriched with Gold Nanoparticles inside Biological Phantom

机译:改进了生物幻影内部富含金纳米粒子的区域的边缘检测

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摘要

Utilizing the surface plasmon resonance (SPR) effect of gold nanoparticles (GNPs) enables their use as contrast agents in a variety of biomedical applications for diagnostics and treatment. These applications use both the very strong scattering and absorption properties of the GNPs due to their SPR effects. Most imaging methods use the light-scattering properties of the GNPs. However, the illumination source is in the same wavelength of the GNPs’ scattering wavelength, leading to background noise caused by light scattering from the tissue. In this paper we present a method to improve border detection of regions enriched with GNPs aiming for the real-time application of complete tumor resection by utilizing the absorption of specially targeted GNPs using photothermal imaging. Phantoms containing different concentrations of GNPs were irradiated with a continuous-wave laser and measured with a thermal imaging camera which detected the temperature field of the irradiated phantoms. By modulating the laser illumination, and use of a simple post processing, the border location was identified at an accuracy of better than 0.5 mm even when the surrounding area got heated. This work is a continuation of our previous research.
机译:利用金纳米颗粒(GNP)的表面等离振子共振(SPR)效应,可以将它们用作造影剂,用于各种生物医学应用中,以进行诊断和治疗。这些应用由于其SPR效应而使用了非常强大的GNP散射和吸收特性。大多数成像方法都使用GNP的光散射特性。但是,照明光源的波长与GNP的散射波长相同,从而导致由组织的光散射引起的背景噪声。在本文中,我们提出了一种通过利用光热成像吸收特定靶向的GNP来改善边界丰富的GNP边界检测的方法,旨在实时应用完整的肿瘤切除术。用连续波激光辐照包含不同浓度的GNP的幻影,并用热像仪进行测量,该热像仪检测被辐照的幻影的温度场。通过调制激光照明,并使用简单的后处理,即使周围区域被加热,也可以以优于0.5 mm的精度识别边界位置。这项工作是我们先前研究的延续。

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