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Retinal oximetry in humans using visible-light optical coherence tomography Invited

机译:使用可见光光学相干断层扫描技术在人体中进行视网膜血氧饱和度测定邀请

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摘要

We measured hemoglobin oxygen saturation (sO2) in the retinal circulation in healthy humans using visible-light optical coherence tomography (vis-OCT). The measurements showed clear oxygenation differences between central retinal arteries and veins close to the optic nerve head. Spatial variations at different vascular branching levels were also revealed. In addition, we presented theoretical and experimental results to establish that noises in OCT intensity followed Rice distribution. We used this knowledge to retrieve unbiased estimation of true OCT intensity to improve the accuracy of vis-OCT oximetry, which had inherently lower signal-to-nose ratio from human eyes due to safety and comfort limitations. We demonstrated that the new statistical-fitting sampling strategy could reduce the estimation error in sO2 by three percentage points (pp). The presented work aims to provide a foundation for using vis-OCT to achieve accurate retinal oximetry in clinical settings.
机译:我们使用可见光光学相干断层扫描(vis-OCT)测量了健康人视网膜循环中的血红蛋白氧饱和度(sO2)。测量结果表明,视网膜中央动脉和靠近视神经头的静脉之间存在明显的氧合差异。还揭示了不同血管分支水平的空间变化。此外,我们提出了理论和实验结果来确定OCT强度的噪声遵循莱斯分布。我们使用此知识来检索真实OCT强度的无偏估计,以提高vis-OCT血氧饱和度测定的准确性,由于安全性和舒适性限制,人眼固有的信噪比较低。我们证明了新的统计拟合抽样策略可以将sO2的估计误差降低三个百分点(pp)。提出的工作旨在为使用vis-OCT在临床环境中实现准确的视网膜血氧饱和度提供基础。

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