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Functional Fourier-domain optical coherence tomography for guiding vitreoretinal surgery.

机译:功能性傅里叶域光学相干断层扫描术指导玻璃体视网膜手术。

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摘要

Vitreoretinal surgery describes various invasive ophthalmologic procedures to treat a wide range of retinal diseases that leads to blindness. The main hypothesis behind this thesis is that optical coherence tomography (OCT) can be used to effectively guide microscopic retinal surgery. Anatomical and functional OCT images can be used to guide surgeon's maneuver in real-time to reduce hemorrhaging and detect blood oxygen saturation level (SO2) intraoperatively.;A fiber-optic spectral domain OCT (SD OCT) has been constructed and evaluated in this dissertation research. Advanced signal processing algorithms for OCT have been developed to overcome problems inherently associated with the hardware and the basic signal processing methods. First, to achieve high axial resolution and accurate ranging, a new automatic spectral calibration (ASC) method for SD OCT was proposed and validated. Secondly, to reduce speckle noise and simultaneously suppress sidelobes in OCT's point spread function (PSF) induced by spectral ripples in the broadband source, an algorithm that combines speckle reduction and deconvolution was developed and the effectiveness of the algorithm was demonstrated. Thirdly, to reduce the amount of data required for high-resolution image reconstruction, the feasibility of using compressed sensing (CS) in SD OCT was studied.;In this dissertation, another important application of OCT is the detection of microvasculature. Chick chorioallantoic membrane with vessel network was used as model tissue. The location and the dimension of blood vessel was identified from OCT image based on signal intensity, as well as interframe speckle variance. Moreover, a technique known as spectroscopic OCT (SOCT) was used to reveal the spectral modification to the incident light induced by blood absorption to assess blood oxygenation level. Finally, speckle variance OCT and spectroscopic OCT images were combined and overlaid to show the locations of blood vessels and spectroscopic information simultaneously.
机译:玻璃体视网膜手术描述了各种侵入性眼科手术,以治疗导致失明的各种视网膜疾病。本论文背后的主要假设是光学相干断层扫描(OCT)可用于有效地指导显微视网膜手术。解剖和功能性OCT图像可用于指导外科医生的实时操作,以减少出血并在术中检测血氧饱和度(SO2)。;本文构建并评估了光纤光谱域OCT(SD OCT)研究。已经开发出用于OCT的高级信号处理算法,以克服与硬件和基本信号处理方法固有相关的问题。首先,为了实现较高的轴向分辨率和准确的测距,提出并验证了一种用于SD OCT的新的自动光谱校准(ASC)方法。其次,为减少斑点噪声并同时抑制宽带源中频谱波动引起的OCT点扩展函数(PSF)旁瓣,提出了一种结合斑点减少和反卷积的算法,并证明了该算法的有效性。第三,为减少高分辨率图像重建所需的数据量,研究了在SD OCT中使用压缩感知(CS)的可行性。本论文中,OCT的另一个重要应用是微脉管系统的检测。将具有脉管网络的小绒毛膜尿囊膜用作模型组织。根据信号强度以及帧间散斑差异,从OCT图像中识别出血管的位置和尺寸。此外,使用一种称为光谱OCT(SOCT)的技术来揭示血液吸收引起的入射光的光谱变化,以评估血液的氧合水平。最后,将散斑方差OCT和光谱OCT图像合并并叠加以同时显示血管的位置和光谱信息。

著录项

  • 作者

    Liu, Xuan.;

  • 作者单位

    The Johns Hopkins University.;

  • 授予单位 The Johns Hopkins University.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.;Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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