首页> 外国专利> IMAGING TRANSVERSE FLOW VELOCITY USING SPECTRAL BANDWIDTH OF THE DOPPLER FREQUENCY SHIFT IN PHASE-RESOLVED OPTICAL DOPPLER TOMOGRAPHY

IMAGING TRANSVERSE FLOW VELOCITY USING SPECTRAL BANDWIDTH OF THE DOPPLER FREQUENCY SHIFT IN PHASE-RESOLVED OPTICAL DOPPLER TOMOGRAPHY

机译:在相分辨光学多普勒成像中使用多普勒频移的谱带宽成像横向流速

摘要

The Doppler bandwidth extracted from the standard deviation of the frequency shift in phase-resolved optical Doppler tomography (ODT) is used to image the velocity component transverse to the probing beam. The effective numerical aperture (NA) of the optical objective determines the slope of the dependence of the standard deviation on velocity. In the case where the angle between the probing beam and flow direction is within ±15 degrees to the perpendicular, the Doppler frequency shift is very sensitive to angle position while the Doppler bandwidth is insensitive to flow direction. Linear dependence of the flow velocity on the Doppler bandwidth allows accurate measurement of flow velocity without precise determination of flow direction. In addition, it also extends the dynamic range of the average frequency shift mapping method used in the phase-resolved ODT.
机译:从相位分辨光学多普勒层析成像(ODT)的频移标准偏差中提取的多普勒带宽用于成像横向于探测光束的速度分量。光学物镜的有效数值孔径(NA)决定了标准偏差对速度的依赖性的斜率。在探测光束与流动方向之间的角度与垂线成±15度以内的情况下,多普勒频移对角度位置非常敏感,而多普勒带宽对流动方向不敏感。流速对多普勒带宽的线性依赖性使得可以精确测量流速而无需精确确定流向。此外,它还扩展了相分辨ODT中使用的平均频移映射方法的动态范围。

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