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Au nanorings for enhancing absorption and backscattering monitored with optical coherence tomography

机译:用光学相干断层扫描监测金纳米环以增强吸收和反向散射

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摘要

Preparation of a high-concentration Au nanoring (NR) water solution and its applications to the enhancement of image contrast in optical coherence tomography (OCT) and the generation of the photothermal effect in a bio-sample through localized surface plasmon (LSP) resonance are demonstrated. Au NRs are first fabricated on a sapphire substrate with colloidal lithography and secondary sputtering of Au, and then transferred into a water solution through a liftoff process. By controlling the NR geometry, the LSP dipole resonance wavelength in tissue can cover a spectral range of 1300nm for OCT scanning of deep tissue penetration. The extinction cross sections of the fabricated Au NRs in water are estimated to give levels of 10~(-10)-10 ~(- 9)cm~2 near their LSP resonance wavelengths. The fabricated Au NRs are then delivered into pig adipose samples for OCT scanning. It is observed that, when resonant Au NRs are delivered into such a sample, LSP resonance-induced Au NR absorption results in a photothermal effect, making the opaque pig adipose cells transparent. Also, the delivered Au NRs in the intercellular substance enhance the image contrast of OCT scanning through LSP resonance-enhanced scattering. By continuously OCT scanning a sample, both photothermal and image contrast enhancement effects are observed. However, by continually scanning a sample with a low scan frequency, only the image contrast enhancement effect is observed.
机译:高浓度金纳米环(NR)水溶液的制备及其在光学相干断层扫描(OCT)中增强图像对比度和通过局部表面等离子体激元(LSP)共振在生物样品中产生光热效应的应用是演示。首先用胶体光刻和Au的二次溅射在蓝宝石衬底上制造Au NR,然后通过剥离工艺将其转移到水溶液中。通过控制NR几何形状,组织中的LSP偶极子共振波长可以覆盖1300nm的光谱范围,用于组织深层穿透的OCT扫描。估计在水中制造的金NR的消光截面在其LSP共振波长附近的水平为10〜(-10)-10〜(-9)cm〜2。然后将制成的Au NRs送入猪脂肪样品中进行OCT扫描。观察到,当将共振的Au NRs传递到这种样品中时,LSP共振诱导的Au NR吸收会导致光热效应,从而使不透明的猪脂肪细胞透明。而且,通过LSP共振增强的散射,在细胞间质中递送的Au NRs增强了OCT扫描的图像对比度。通过连续OCT扫描样品,可以观察到光热效应和图像对比度增强效应。然而,通过以低扫描频率连续扫描样品,仅观察到图像对比度增强效果。

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