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Cornea microstructural and mechanical response measured using nonlinear optical and optical coherence microscopy with sub-10-femtosecond pulses.

机译:角膜的显微结构和机械响应是使用非线性光学和光学相干显微镜与小于10飞秒的脉冲来测量的。

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摘要

A detailed understanding of the corneal biomechanical response is an important prerequisite to understanding corneal diseases such as keratoconus and for placing the empirical equations used in refractive surgery on a physical basis. We have assembled a combined nonlinear optical microscopy (NLOM) and optical coherence microscopy (OCM) imaging system to simultaneously capture coregistered volumetric images of corneal morphology and biochemistry. Fudicial markers visible in the OCM volume enabled the calculation of strains for multiple depth layers in rabbit cornea. The results revealed a depth dependent strain distribution, with smaller strains in the anterior stroma and larger strains in the posterior stroma. The stress-strain curves can be grouped readily by depth into three groups: anterior (∼20%), transitional mid (∼40%), and posterior (∼40%). Cross-sectional images of collagen lamellae, visible in NLOM, showed inhomogeneous collagen structure and its response to intraocular pressure along the anterior-posterior direction. The inhomogeneities correlate well with the noted heterogeneous corneal mechanical properties. The combined NLOM-OCM system can measure corneal microstructure and mechanical response uniquely, thus providing a microstructural understanding of corneal response to changes of collagen structure.
机译:对角膜生物力学反应的详细了解是了解角膜疾病(例如圆锥角膜)和将屈光手术中使用的经验方程式置于物理基础上的重要前提。我们组装了组合的非线性光学显微镜(NLOM)和光学相干显微镜(OCM)成像系统,以同时捕获角膜形态和生物化学的共同配准的体积图像。 OCM卷中可见的辅助标记可以计算兔角膜多个深度层的应变。结果显示了深度相关的应变分布,前基质的应变较小,后基质的应变较大。应力-应变曲线可以很容易地按深度分为三组:前组(约20%),过渡中段(约40%)和后组(约40%)。在NLOM中可见的胶原薄片的横截面图像显示了不均匀的胶原结构及其沿前后方向对眼压的响应。不均匀性与所指出的异质角膜机械性能良好相关。组合的NLOM-OCM系统可以唯一地测量角膜微结构和机械反应,从而提供对角膜对胶原结构变化的反应的微结构理解。

著录项

  • 作者

    Wu, Qiaofeng.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Health Sciences Ophthalmology.;Biophysics Biomechanics.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 95 p.
  • 总页数 95
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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