首页> 外文学位 >Measuring and modeling intraocular light scatter with Shack-Hartmann wavefront sensing and the effects of nuclear cataract on the measurement of wavefront error.
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Measuring and modeling intraocular light scatter with Shack-Hartmann wavefront sensing and the effects of nuclear cataract on the measurement of wavefront error.

机译:利用Shack-Hartmann波前传感测量和建模眼内光散射,以及核白内障对波前误差的测量。

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摘要

Purpose. The purpose of this research is to determine if Shack/Hartmann (S/H) wavefront sensing (SHWS) can be used to objectively quantify ocular forward scatter.;Methods. Patient S/H images from an study of nuclear cataract were analyzed to extract scattering data by examining characteristics of the lenslet point spread functions. Physical and computer eye models with simulated cataract were developed to control variables and to test the underlying assumptions for using SHWS to measure aberrations and light scatter from nuclear cataract.;Results. (1) For patients with nuclear opalescence (NO) >=2.5, forward scatter metrics in a multiple regression analysis account for 33% of variance in Mesopic Low Contrast acuity. Prediction of visual acuity was improved by employing a multiple regression analysis that included both backscatter and forward scatter metrics (R2 = 51%) for Mesopic High Contrast acuity. (2) The physical and computer models identified areas of instrument noise (e.g., stray light and unwanted reflections) improving the design of a second generation SHWS for measuring both wavefront error and scatter. (3) Exposure time had the most influence on, and pupil size had negligible influence on forward scatter metrics. Scatter metric MAX_SD predicted changes in simulated cataract up to R2 = 92%. There were small but significant differences (alpha = 0.05) between 1.5-pass and 1-pass wavefront measurements inclusive of variable simulated nuclear cataract and exposure; however, these differences were not visually significant. Improvements to the SHWS imaging hardware, software, and test protocol were implemented in a second generation SHWS to be used in a longitudinal cataract study.;Conclusions. Forward light scatter in real eyes can be quantified using a SHWS. In the presence of clinically significant nuclear opalescence, forward scatter metrics predicted acuity better than the LOCS III NO backscatter metric. The superiority of forward scatter metrics over back scatter metrics is attributed to the transition to mostly Mie scatter associated with larger particles and increased density. Both physical and computer cataract models can be used to provide insight into what is being captured in a S/H image and to improve instrument design. The ability of forward scatter metrics derived from S/H measurements to predict cataract severity for a longitudinal study is optimized by selecting a patient specific exposure at the initial cataract assessment to maximize the dynamic range of the system. Under various exposure and nuclear cataract conditions, the difference in RMS wavefront error between a 1.5-pass S/H image and a 1-pass S/H image does not reach the threshold of being visually significant for Photopic High Contrast and Mesopic Low Contrast acuity. (Abstract shortened by UMI.)
机译:目的。这项研究的目的是确定是否可以使用Shack / Hartmann(S / H)波前传感(SHWS)客观地量化眼前散射。通过检查小透镜点扩散​​函数的特征,对来自核白内障研究的患者S / H图像进行了分析,以提取散射数据。开发了具有模拟白内障的物理和计算机眼睛模型,以控制变量并测试使用SHWS测量核白内障的像差和光散射的基本假设。 (1)对于核乳光(NO)> = 2.5的患者,多元回归分析中的前向散射指标占Mesopic低对比度敏锐度方差的33%。对视力的预测通过采用多元回归分析进行了改进,该分析包括Mesopic高对比度视力的后向散射指标和前向散射指标(R2 = 51%)。 (2)物理和计算机模型确定了仪器噪声的区域(例如杂散光和有害反射),从而改进了用于测量波前误差和散射的第二代SHWS的设计。 (3)曝光时间对前向散射指标的影响最大,瞳孔大小对前向散射指标的影响可以忽略。散射度量MAX_SD可以预测模拟白内障的变化,最高可达R2 = 92%。 1.5次和1次波前测量之间存在微小但显着的差异(alpha = 0.05),包括可变的模拟核白内障和照射。但是,这些差异在视觉上并不明显。在第二代SHWS中实现了对SHWS成像硬件,软件和测试协议的改进,可用于纵向白内障研究。可以使用SHWS量化真实眼睛中的前向光散射。在临床上存在明显的核乳光的情况下,前向散射度量比LOCS III NO反向散射度量能更好地预测敏锐度。前向散射度量比后向散射度量的优越性归因于过渡到与较大粒子和密度增加相关的大部分Mie散射。物理和计算机白内障模型都可以用于洞察S / H图像中捕获的内容并改善仪器设计。通过在初始白内障评估时选择患者特定的暴露量以最大化系统的动态范围,可以优化从S / H测量得出的前向散射指标预测纵向研究白内障严重程度的能力。在各种曝光和核白内障条件下,1.5通道S / H图像和1通道S / H图像之间的RMS波前误差差异不会达到对视觉高对比度和中视低对比度敏锐度视觉上显着的阈值。 (摘要由UMI缩短。)

著录项

  • 作者

    Donnelly, William J., III.;

  • 作者单位

    University of Houston.;

  • 授予单位 University of Houston.;
  • 学科 Health Sciences Ophthalmology.;Physics Optics.;Biophysics Medical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 314 p.
  • 总页数 314
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;光学;
  • 关键词

  • 入库时间 2022-08-17 11:41:34

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