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首页> 外文期刊>Biomedical Optics Express >Henle fiber layer phase retardation measured with polarization-sensitive optical coherence tomography
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Henle fiber layer phase retardation measured with polarization-sensitive optical coherence tomography

机译:用偏振敏感光学相干层析成像技术测量的Henle纤维层相位延迟

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Abstract: We developed a method based on polarization-sensitive optical coherence tomography (PS-OCT) to quantify the double pass phase retardation (DPPR) induced by Henle fiber layer in three subjects. Measurements of the retina were performed at a mean wavelength of 840 nm using two polarization states that were perpendicular in a Poincaré sphere representation and phase retardation contributions from tissue layers above and below the Henle fiber layer were excluded using appropriately placed reference and measurement points. These points were semi-automatically segmented from intensity data. Using a new algorithm to determine DPPR, the Henle fiber layer in three healthy subjects aged 50-60 years showed elevated DPPR in a concentric ring about the fovea, with an average maximum DPPR for the three subjects of 22.0° (range: 20.4° to 23.0°) occurring at an average retinal eccentricity of 1.8° (range: 1.5° to 2.25°). Outside the ring, a floor of approximately 6.8° was measured, which we show can mainly be attributed to phase noise that is induced in the polarization states. We also demonstrate the method can determine fast axis orientation of the retardation, which is found consistent with the known radial pattern of Henle fibers.
机译:摘要:我们开发了一种基于偏振敏感光学相干断层扫描(PS-OCT)的方法,以量化Henle纤维层在三个对象中引起的双程相位延迟(DPPR)。使用在庞加莱球体表示中垂直的两个偏振态在840 nm的平均波长下进行视网膜测量,并使用适当放置的参考点和测量点排除了Henle纤维层上方和下方的组织层的相位延迟影响。这些点是从强度数据中进行半自动分段的。使用新算法确定DPPR,三个年龄在50-60岁的健康受试者的Henle纤维层显示出中央凹周围同心环的DPPR升高,三个受试者的平均最大DPPR为22.0°(范围:20.4°至23.0°)发生在平均视网膜偏心度为1.8°(范围:1.5°至2.25°)的情况下。在环外,测得的底面约为6.8°,我们证明这主要归因于在极化状态下引起的相位噪声。我们还证明了该方法可以确定延迟的快速轴方向,这与已知的Henle纤维的径向图案一致。

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