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Reflective optics-based line-scanning spectral domain optical coherence tomography system

机译:基于反射光学的线扫描谱域光学相干层析成像系统

摘要

Optical Coherence Tomography (OCT) is a high-resolution non-invasive and non-contact imaging technology. Traditionally, multi-axis spot-focused scanning is used for transverse scanning to obtain a two or three-dimensional OCT image. This increases the time to acquire an image and imaging performance is affected by motion artifacts. Moreover, lenses are used in the state-of-the-art OCT systems that reduce the axial resolution due to chromatic aberration, and affect the imaging quality due to distorted scan field. udIn order to avoid the problems mentioned above, the objective of the present thesis is to develop a reflective optics-based line-scan spectral domain OCT system for high-quality three-dimensional imaging. Cylindrical mirror used in this thesis for focusing eliminates chromatic aberration and provides a flat scan field. Line scanning reduces the requirement of scanning to one axis and thereby making the image acquisition faster. A novel reflective optics based line-scanning system with a spectrometer has been designed, and also the scanning system has been verified experimentally. udThe design of the scanner includes analytical and optical modeling of the proposed scanning configuration, along with the development of experimental setup and validation. Scanning system parameters that affect the imaging quality were studied and selected in the design. In addition, optical modeling of a reflective optics spectrometer was carried out, and an analytical model was developed for spectral domain OCT signal processing. Marechal criterion of Strehl Ratio above 0.8 was used as a benchmark to evaluate the imaging quality of the proposed system.udTo validate the line scanning model, an experimental setup consisting of a 53nm spectral bandwidth light source with cylindrical mirrors of 25.85mm and 51.7mm focal lengths was developed. Scanning was performed in both tangential and sagittal directions. The improvement in imaging performance by using sagittal scanning was demonstrated. It was also proved experimentally that the mirror focusing is insensitive variations in beam positions. ud
机译:光学相干断层扫描(OCT)是高分辨率的非侵入性和非接触式成像技术。传统上,多轴点聚焦扫描用于横向扫描以获得二维或三维OCT图像。这会增加获取图像的时间,并且运动伪像会影响成像性能。此外,在最先进的OCT系统中使用了透镜,这些透镜会由于色差而降低轴向分辨率,并由于扫描场失真而影响成像质量。为了避免上述问题,本发明的目的是开发一种用于高质量三维成像的基于反射光学的线扫描光谱域OCT系统。本文使用的用于聚焦的圆柱镜消除了色差,并提供了平坦的扫描场。线扫描减少了对一个轴进行扫描的要求,从而使图像采集更快。设计了一种新颖的基于反射光学系统的带有谱仪的线扫描系统,并且对该扫描系统进行了实验验证。 ud扫描仪的设计包括拟议扫描配置的分析和光学建模,以及实验设置和验证的开发。在设计中研究并选择了影响成像质量的扫描系统参数。此外,对反射光谱仪进行了光学建模,并开发了用于光谱域OCT信号处理的分析模型。以Strehl Ratio大于0.8的Marechal准则作为基准来评估所提出系统的成像质量。 ud为了验证线扫描模型,使用了由53nm光谱带宽光源与25.85mm和51.7mm柱面镜组成的实验装置焦距被开发出来。沿切线方向和矢状方向进行扫描。通过使用矢状扫描显示了成像性能的提高。实验还证明,镜面聚焦是光束位置的不敏感变化。 ud

著录项

  • 作者

    Kamal Mohammad;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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