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Contrast enhancement of optical coherence tomography images using branched gold nanoparticles

机译:使用分支金纳米粒子的光学相干断层扫描图像的对比度增强

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We propose the use of branched gold nanoparticles (B-GNPs) as a contrast agent for optical coherence tomography (OCT) imaging. Our results show that even when the central source of our OCT (1325 nm) is too far from the maximum peak of the plasmon resonance, branched nanoparticles scatter light very efficiently at this wavelength. B-GNPs were tested as a contrast agent in water and agarose-TiO_2 tissue phantoms; the estimated increments in contrast were 9.19 dB and 15.07 dB for branched nanoparticles in water with concentrations of 2.2×10~9 NPs/mL and 6.6×10~9 NPs/mL, respectively, while for agarose-TiO_2 tissue phantoms the estimated value was 3.17 dB. These results show the promising application of B-GNPs as a contrast agent for tissue imaging using OCT, not only for sources at 1325 nm but also at other central wavelengths located between 800 and 1000 nm.
机译:我们建议使用支链金纳米粒子(B-GNPs)作为光学相干断层扫描(OCT)成像的造影剂。我们的结果表明,即使OCT的中心光源(1325 nm)距离等离激元共振的最大峰太远,分支的纳米粒子也可以非常高效地散射该波长的光。在水和琼脂糖-TiO_2组织模型中测试了B-GNPs作为对比剂。浓度为2.2×10〜9 NPs / mL和6.6×10〜9 NPs / mL的水中分支纳米粒子的对比度估计增量分别为9.19 dB和15.07 dB,而琼脂糖TiO_2组织体模的估计值为3.17分贝。这些结果表明,B-GNPs作为使用OCT进行组织成像的造影剂的应用前景广阔,不仅适用于1325 nm的光源,而且适用于800至1000 nm之间的其他中心波长。

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