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Surface Plasmon Assisted High Resolution and High Contrast Optical Imaging.

机译:表面等离激元辅助的高分辨率和高对比度光学成像。

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摘要

This thesis presents theoretical and/or experimental demonstrations of several Surface Plasmon (SP) assisted high-resolution or high-contrast microscopy techniques, including Plasmonic Structured Illumination Microscopy (PSIM), Plasmonic Darkfield (PDF) Microscopy, Plasmonic Evanescent field (PEF) Microscopy and Localized Surface Plasmon Assisted Contrast (LSPAC) Microscopy.;The PSIM combines tunable SP interference with structured illumination microscopy (SIM) to achieve super-resolution. By replacing the laser interference fringes in conventional SIM with SP interference (SPI) patterns, PSIM possesses higher image resolving power compared to that of SIM. Both theoretical and experimental concept demonstration shows more than 2.6-fold resolution improvement compared with conventional epi-fluorescence microscopy, whereas SIM only achieves about 2 times resolution improvement. This new PSIM technique is a wide field super-resolution imaging technique and potentially could be used for high-speed biomedical imaging.;The PDF microscopy is a compact, alignment-free dark-field microscopy technique. Experimental results show that it is capable of forming dark-field images of the specimens by utilizing a highly integrated chip-scale plasmonic condenser. The PEF microscopy is a similar technique that exploits the extremely short z decay length of high wave vector SP waves for achieving selective excitation of fluorophores very close to the substrate. Both the PDF and PEF microscopy possess high z resolution and high imaging contrast and are suitable for the dynamics study near the contact regions of living cells and the substrate.;The LSPAC microscopy combines localized surface plasmon resonance (LSPR) and dark field microscopy technique for high-contrast purpose. Because of the sensitive response of LSPR with the change of surrounding media refractive indices, this technique can convert the refractive index variation to the scattering intensity difference and form a high contrast, diffraction limited image of a thin unstained transparent specimen with small refractive index variation.
机译:本文介绍了几种表面等离激元(SP)辅助的高分辨率或高对比度显微镜技术的理论和/或实验证明,包括等离子结构照明显微镜(PSIM),等离子暗场(PDF)显微镜,等离子E逝场(PEF)显微镜PSIM将可调SP干扰与结构照明显微镜(SIM)结合在一起,实现了超分辨率。通过用SP干扰(SPI)模式替换传统SIM中的激光干扰条纹,与SIM相比,PSIM具有更高的图像分辨能力。理论和实验概念论证均显示,与传统的落射荧光显微镜相比,分辨率提高了2.6倍以上,而SIM仅实现了约2倍的分辨率提高。这项新的PSIM技术是一种广域超分辨率成像技术,并且有可能用于高速生物医学成像。PDF显微镜技术是一种紧凑的免对准暗场显微镜技术。实验结果表明,通过利用高度集成的芯片级等离子电容器,它能够形成标本的暗场图像。 PEF显微镜是一种类似的技术,它利用高波矢量SP波的极短的z衰减长度来实现非常接近基板的荧光团的选择性激发。 PDF和PEF显微镜均具有高z分辨率和高成像对比度,适合在活细胞和基质接触区域附近进行动力学研究。LSPAC显微镜结合了局部表面等离子体激元共振(LSPR)和暗场显微镜技术高对比度的目的。由于LSPR随周围介质折射率的变化而产生的灵敏响应,该技术可以将折射率变化转换为散射强度差,并形成折射率变化小的薄的,未染色的透明样品的高对比度,衍射受限的图像。

著录项

  • 作者

    Wei, Feifei.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Optics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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