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Imaging and quantifying transverse flow velocity with the Doppler bandwidth in a phase-resolved functional optical coherence tomography

机译:在相位分辨功能光学相干层析成像中使用多普勒带宽对横向流速进行成像和量化

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The Doppler bandwidth extracted from the standard deviation of the frequency shift in phase-resolved functional optical coherence tomography (F-OCT) was used to image the velocity component that is transverse to the optical probing beam. It was found that above a certain threshold level the Doppler bandwidth is a linear function of flow velocity and that the effective numerical aperture of the optical objective in the sample arm determines the slope of this dependence. The Doppler bandwidth permits accurate measurement of flow velocity without the need for precise determination of flow direction when the Doppler flow angle is within +/-15degrees perpendicular to the probing beam. Such an approach extends the dynamic range of flow velocity measurements obtained with the phase-resolved F-OCT. (C) 2002 Optical Society of America. [References: 8]
机译:从相位分辨功能光学相干断层扫描(F-OCT)的频移标准偏差中提取的多普勒带宽用于成像横向于光学探测光束的速度分量。已经发现,在某个阈值水平以上,多普勒带宽是流速的线性函数,并且在采样臂中光学物镜的有效数值孔径决定了这种依赖性的斜率。当多普勒流动角在垂直于探测光束的+/- 15度以内时,多普勒带宽允许精确测量流速,而无需精确确定流动方向。这种方法扩展了通过相分辨F-OCT获得的流速测量的动态范围。 (C)2002年美国眼镜学会。 [参考:8]

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