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Optical properties of photoreceptor and retinal pigment epithelium cells investigated with adaptive optics optical coherence tomography.

机译:用自适应光学光学相干断层扫描技术研究感光细胞和视网膜色素上皮细胞的光学特性。

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摘要

Human vision starts when photoreceptors collect and respond to light. Photoreceptors do not function in isolation though, but share close interdependence with neighboring photoreceptors and underlying retinal pigment epithelium (RPE) cells. These cellular interactions are essential for normal function of the photoreceptor-RPE complex, but methods to assess these in the living human eye are limited. One approach that has gained increased promise is high-resolution retinal imaging that has undergone tremendous technological advances over the last two decades to probe the living retina at the cellular level. Pivotal in these advances has been adaptive optics (AO) and optical coherence tomography (OCT) that together allow unprecedented spatial resolution of retinal structures in all three dimensions. Using these high-resolution systems, cone photoreceptor are now routinely imaged in healthy and diseased retina enabling fundamental structural properties of cones to be studied such as cell spacing, packing arrangement, and alignment. Other important cell properties, however, have remained elusive to investigation as even better imaging performance is required and thus has resulted in an incomplete understanding of how cells in the photoreceptor-RPE complex interact with light.;To address this technical bottleneck, we expanded the imaging capability of AO-OCT to detect and quantify more accurately and completely the optical properties of cone photoreceptor and RPE cells at the cellular level in the living human retina. The first objective of this thesis was development of a new AO-OCT method that is more precise and sensitive, thus enabling a more detailed view of the 3D optical signature of the photoreceptor-RPE complex than was previously possible (Chapter 2). Using this new system, the second objective was quantifying the waveguide properties of individual cone photoreceptor inner and outer segments across the macula (Chapter 3). The third objective extended the AO-OCT method to RPE cell imaging. This entailed using AO-OCT in conjunction with organelle motility as a novel contrast mechanism to visualize RPE cells and to characterize their 3D reflectance profile (Chapter 4).
机译:人的视觉开始于感光器收集并响应光的时候。光感受器虽然不能单独发挥作用,但与邻近的光感受器和下面的视网膜色素上皮细胞(RPE)具有密切的相互依赖性。这些细胞相互作用对于感光体-RPE复合体的正常功能是必不可少的,但是在活人眼中评估这些功能的方法是有限的。一种获得更大希望的方法是高分辨率视网膜成像,该技术在过去的二十年中经历了巨大的技术进步,可以在细胞水平上探测活的视网膜。这些进步的关键是自适应光学(AO)和光学相干断层扫描(OCT),它们在一起可以在所有三个维度上实现前所未有的视网膜结构空间分辨率。使用这些高分辨率系统,现在可以在健康和患病的视网膜中对锥体感光器进行常规成像,从而可以研究锥体的基本结构特性,例如细胞间距,排列方式和排列方式。但是,其他重要的细胞特性仍然无法进行研究,因为还需要更好的成像性能,因此导致人们对光感受器-RPE复合物中的细胞如何与光相互作用尚不完全了解。为了解决这一技术瓶颈,我们扩大了AO-OCT的成像能力,可以更准确,更完整地检测和定量定量活的人类视网膜中视锥细胞感光细胞和RPE细胞的光学特性。本文的第一个目的是开发一种新的AO-OCT方法,该方法更加精确和灵敏,因此可以比以前的方法(第2章)更详细地显示感光体-RPE复合物的3D光学特征。使用这个新系统,第二个目标是量化整个黄斑上各个锥体感光体内部和外部部分的波导特性(第3章)。第三个目标将AO-OCT方法扩展到RPE细胞成像。这需要结合使用AO-OCT和细胞器运动性作为一种新颖的对比机制,以可视化RPE细胞并表征其3D反射率特征(第4章)。

著录项

  • 作者

    Liu, Zhuolin.;

  • 作者单位

    Indiana University.;

  • 授予单位 Indiana University.;
  • 学科 Optics.;Engineering.;Medical imaging.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:13

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