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Characterizing the localized surface plasmon resonance behaviors of Au nanorings and tracking their diffusion in bio-tissue with optical coherence tomography

机译:表征金纳米环的局部表面等离振子共振行为,并通过光学相干断层扫描跟踪其在生物组织中的扩散

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摘要

The characterization results of the localized surface plasmon resonance (LSPR) of Au nanorings (NRs) with optical coherence tomography (OCT) are first demonstrated. Then, the diffusion behaviors of Au NRs in mouse liver samples tracked with OCT are shown. For such research, aqueous solutions of Au NRs with two different localized surface plasmon resonance (LSPR) wavelengths are prepared and characterized. Their LSPR-induced extinction cross sections at 1310 nm are estimated with OCT scanning of solution droplets on coverslip to show reasonably consistent results with the data at individual LSPR wavelengths and at 1310 nm obtained from transmission measurements of Au NR solutions and numerical simulations. The resonant and non-resonant Au NRs are delivered into mouse liver samples for tracking Au NR diffusion in the samples through continuous OCT scanning for one hour. With resonant Au NRs, the average A-mode scan profiles of OCT scanning at different delay times clearly demonstrate the extension of strong backscattering depth with time. The calculation of speckle variance among successive OCT scanning images, which is related to the local transport speed of Au NRs, leads to the illustrations of downward propagation and spreading of major Au NR motion spot with time.
机译:首先证明了金纳米环(NRs)的局部表面等离振子共振(LSPR)的光学相干层析成像(OCT)的表征结果。然后,显示了用OCT追踪的Au NRs在小鼠肝脏样品中的扩散行为。为了进行此类研究,制备并表征了具有两个不同的局部表面等离振子共振(LSPR)波长的Au NR水溶液。通过盖玻片上的液滴的OCT扫描估计了它们在1310 nm处的LSPR诱导的灭绝截面,以显示与Au NR溶液的透射测量和数值模拟获得的在单个LSPR波长和1310 nm处的数据合理一致的结果。共振和非共振金NR传递到小鼠肝脏样品中,以通过连续OCT扫描一小时来追踪样品中金NR的扩散。使用共振金NR,OCT扫描在不同延迟时间的平均A模式扫描曲线清楚地表明了强反向散射深度随时间的扩展。与Au NRs的局部传输速度有关的连续OCT扫描图像之间的散斑方差的计算可以说明主要Au NR运动点随时间向下传播和散布的情况。

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