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Snapshot Hyperspectral Imaging for Complete Fundus Oximetry

机译:完整的眼底血氧饱和度的快照高光谱成像

摘要

In this work, a snapshot hyperspectral imager capable of tuning its average spectral resolution from 22.7 nm to 13.9 nm in a single integrated form is presented. The principle of this system will enable future snapshot systems to dynamically adapt to a wide range of imaging situations. Additionally, the system overcomes datacube size limitations imposed by detector array size limits. The work done in this thesis also advances oximetry of the retina using data collected by the Image Mapping spectrometer (IMS), a snapshot spectrometer. Hyperspectral images of the retina are acquired, and oximetry of individual vessels in four diseased eyes is presented. Further, oximetry of the entire fundus is performed using a novel algorithm with data collected with the IMS. We present oxyhemoglobin concentration maps of the eye and demonstrate oxygen sensitivity of the maps by comparing normal and diseased eyes. The aim of this work is to advance the general capabilities of snapshot hyperspectral imagers and to advance the integration of retinal oximetry into the standard ophthalmology instrument repertoire.
机译:在这项工作中,提出了一种快照高光谱成像仪,该成像仪能够以单个集成形式将其平均光谱分辨率从22.7 nm调整到13.9 nm。该系统的原理将使未来的快照系统能够动态适应各种成像情况。另外,该系统克服了检测器阵列尺寸限制所施加的数据立方体尺寸限制。本文的工作还利用快照光谱仪图像映射光谱仪(IMS)收集的数据提高了视网膜的血氧饱和度。获取视网膜的高光谱图像,并呈现四只患病眼中单个血管的血氧饱和度。此外,使用新颖的算法对整个眼底进行血氧定量,并使用IMS收集数据。我们提出了眼睛的氧合血红蛋白浓度图,并通过比较正常和患病的眼睛证明了氧敏感性图。这项工作的目的是提高快照高光谱成像仪的一般功能,并促进将视网膜血氧饱和度集成到标准眼科仪器库中。

著录项

  • 作者

    Dwight Jason G;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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