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Real-time phase-resolved functional optical coherence tomography by use of optical Hilbert transformation

机译:使用光学希尔伯特变换的实时相位分辨功能光学相干断层扫描

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We have developed a novel real-time phase-resolved functional optical coherence tomography system that uses optical Hilbert transformation. When we use a resonant scanner in the reference arm of the interferometer, with an axial scanning speed of 4 kHz, the frame rate of both structural and Doppler blood-flow imaging with a size of 100 by 100 pixels is 10 Hz. The system has high sensitivity and a larger dynamic range for measuring the Doppler frequency shift that is due to moving red blood cells. Real-time images of in vivo blood flow in human skin obtained with this interferometer are presented. (C) 2002 Optical Society of America. [References: 13]
机译:我们已经开发了使用光学希尔伯特变换的新型实时相位分辨功能光学相干层析成像系统。当我们在干涉仪的参考臂中使用共振扫描仪时,轴向扫描速度为4 kHz,结构和多普勒血流成像的帧速率均为100 x 100像素,均为10 Hz。该系统具有高灵敏度和较大的动态范围,可用于测量由于移动的红血球引起的多普勒频移。展示了使用该干涉仪获得的人体皮肤中体内血流的实时图像。 (C)2002年美国眼镜学会。 [参考:13]

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