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An experimental setup for femtosecond laser modification and confocal spectroscopy of bioloigcal tissue.

机译:飞秒激光修饰和生物组织共聚焦光谱的实验装置。

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摘要

An experimental setup was designed and built to spectroscopically investigate biological tissues. Described is a confocal microscope setup built to perform both linear and nonlinear laser spectroscopy as well as femtosecond laser modifications of biological tissues in a combined setup. Of interest was corneal tissue modified by femtosecond laser pulses at intensities below the laser induced optical breakdown threshold. Tissue modifications, which appear as streaks, indicate that changes are taking place in the molecular structure of the tissue despite the lack of full optical breakdown. These modifications are of interest because of the expanding use of femtosecond lasers in refractive surgery. In this work, the design of an experimental setup capable of performing several types of linear and nonlinear spectroscopic methods applicable to studying these modifications is described. The confocal spectroscopy setup consists of several excitation lasers, a spectrometer and detectors for acquiring spectra, and a laser-scanning stage for spectral imaging. In addition, the setup integrates the ability to modify corneal tissue by femtosecond laser exposure so that modifications can be performed and monitored in the same experimental apparatus. Experiments were performed to attempt corneal tissue modifications by femtosecond laser. Modifications were successful using an amplified Ti:Sapphire laser with ∼100 nJ pulses. To test the spectroscopic capabilities of the setup, Raman and fluorescence spectroscopy experiments were done on ocular tissues from freshly enucleated lamb eyes. Spectra of lens and corneal tissue were acquired using 660 nm and 473 nm diode lasers. The setup and data acquired by these preliminary experiments will establish a basis for a future in depth investigation of these corneal modifications.
机译:设计并建立了一个实验装置,以光谱法研究生物组织。描述了一种共聚焦显微镜设置,该设置可在组合设置中执行线性和非线性激光光谱以及生物组织的飞秒激光修改。令人关注的是,飞秒激光脉冲在低于激光诱导的光学击穿阈值的强度下修饰了角膜组织。尽管没有完全的光学击穿,但显示为条纹的组织修饰表明组织的分子结构发生了变化。由于飞秒激光在屈光手术中的广泛使用,这些修改是令人感兴趣的。在这项工作中,描述了一种实验装置的设计,该装置能够执行适用于研究这些修改的几种类型的线性和非线性光谱方法。共聚焦光谱仪由几个激发激光器,光谱仪和用于采集光谱的检测器以及用于光谱成像的激光扫描台组成。此外,该装置还具有通过飞秒激光曝光来修饰角膜组织的能力,因此可以在同一实验装置中执行和监视修饰。进行了尝试通过飞秒激光进行角膜组织修饰的实验。使用具有约100 nJ脉冲的放大的Ti:Sapphire激光器成功进行了修饰。为了测试该装置的光谱功能,对来自刚摘除眼镜的羊眼的眼组织进行了拉曼光谱和荧光光谱实验。晶状体和角膜组织的光谱是使用660 nm和473 nm二极管激光器获得的。这些初步实验获得的设置和数据将为将来深入研究这些角膜修饰奠定基础。

著录项

  • 作者

    Fung, Derek.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Physics Optics.;Biophysics General.
  • 学位 M.S.
  • 年度 2009
  • 页码 94 p.
  • 总页数 94
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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