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Polarization sensitive changes in the human macula associated with normal aging and age-related macular degeneration.

机译:与正常衰老和年龄相关的黄斑变性有关的人黄斑的极化敏感变化。

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摘要

The human macula occupies a relatively small, but crucial retinal area, as it is the location responsible for our most acute spatial vision and best color discrimination. Localizing important landmarks in the retina is difficult even in normal eyes where morphological inter-individual variability is high. This becomes even more challenging in the presence of sight-threatening pathology. With respect to the human macula, there remains a significant gap in the understanding of normal structure and function. Even less is known about the pathological mechanisms that occur in sight-threatening diseases including age-related macular degeneration. Because relatively little is known about normal aging changes, it is also difficult to differentiate those changes from changes associated with retinal disease.;To better understand normal and pathological changes in the macula, imaging techniques using specific optical signatures are required. Structural features in the macula can be distinguished based on their intrinsic properties using specific light/tissue interactions. Because of the high degree of structural regularity in the macula, polarization sensitive imaging is potentially a useful tool for evaluating the morphology and integrity of the cellular architecture for both normal individuals and those affected by disease.;In our investigations, we used polarization sensitive imaging to determining normal landmarks that are important clinically and for research investigations. We found that precision and accuracy in localizing the central macula was greatly improved through the use of polarization sensitive imaging. We also found that specific polarization alterations can be used to demonstrate systematic changes as a function of age, disproportionately affecting the central macular region. When evaluating patients with age-related macular degeneration, we found that precision and accuracy of localizing the central macula was also improved, even when significant pathology was present. We found that normal aging changes could be distinguished from pathology associated with AMD and that polarization sensitive imaging can be used to delineate large extents of retinal damage. We found that various types of AMD pathology can also be differentiated based on scattering and polarization altering properties. Our findings demonstrate that polarization sensitive imaging is a useful modality in the evaluation of changes occurring in the normal human macula as well as changes associated with serious macular disease.
机译:人类黄斑区占相对较小但至关重要的视网膜区域,因为它是导致我们最敏锐的空间视觉和最佳色彩识别的位置。即使在形态个体差异较大的正常眼睛中,也很难在视网膜上定位重要的标志。在存在威胁视力的病理情况下,这甚至变得更具挑战性。关于人类黄斑,在对正常结构和功能的理解上仍然存在很大差距。人们对包括年龄相关性黄斑变性在内的威胁视力的疾病的病理机制了解甚少。由于对正常衰老的变化知之甚少,因此也很难将这些变化与与视网膜疾病相关的变化区分开。为了更好地了解黄斑的正常和病理学变化,需要使用特定光学特征的成像技术。黄斑中的结构特征可以使用特定的光/组织相互作用基于其固有特性进行区分。由于黄斑中高度的结构规则性,偏振敏感成像可能是评估正常个体和受疾病影响者细胞结构形态和完整性的有用工具。在我们的研究中,我们使用偏振敏感成像确定对临床和研究调查很重要的正常标志。我们发现,通过使用偏振敏感成像可以大大提高定位中央黄斑的精确度和准确性。我们还发现,特定的极化变化可用于显示随着年龄变化的系统变化,不成比例地影响中央黄斑区。在评估与年龄相关的黄斑变性的患者时,我们发现即使存在明显的病理情况,中央黄斑定位的准确性和准确性也得到了改善。我们发现正常的衰老变化可与与AMD相关的病理学区分开,并且偏振敏感成像可用于描述大部分视网膜损伤。我们发现,基于散射和偏振改变特性,也可以区分各种类型的AMD病理。我们的研究结果表明,偏振敏感成像是评估正常人黄斑中发生的变化以及与严重黄斑疾病相关的变化的有用方式。

著录项

  • 作者

    VanNasdale, Dean Allan, Jr.;

  • 作者单位

    Indiana University.;

  • 授予单位 Indiana University.;
  • 学科 Health Sciences Ophthalmology.;Physics Optics.;Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 340 p.
  • 总页数 340
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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