首页> 外文会议>Conference on Coherence Domain Optical Methods in Biomedical Science and Clinical Applications Ⅵ Jan 21-23, 2002 San Jose, USA >Development of a Phase-Resolved Doppler Optical Coherence Tomography System for use in Cutaneous Microcirculation Research
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Development of a Phase-Resolved Doppler Optical Coherence Tomography System for use in Cutaneous Microcirculation Research

机译:用于皮肤微循环研究的相分辨多普勒光学相干断层扫描系统的研制

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Phase-resolved Doppler optical coherence tomography is a recently reported technique for simultaneously imaging tissue structure and blood with high velocity resolution. The optical set-up consists of a fibre-based Michelson interferometer with a 1300nm superiuminescent diode in the source arm. The output power is 0.6mW with a bandwidth of 50nm. The reference arm contains a grating-based Fourier domain rapid-scanning delay line with an electro-optic phase modulator to provide a stable reference frequency (800kHz). Ten axial scans sampled, at 400Hz, from the same location are processed to generate structural and velocity data from the reconstructed phase information derived from a Hilbert transform. The sample arm probe focuses light from the fibre into the tissue, producing a beam spot of diameter approximately 20μm. The probe is mounted on a linear translation stage, which generates a lateral step of 10μm between groups of ten axial scans. The Doppler shift in each pixel is calculated from the average phase shift over the ten sequential scans at each location. The acquisition time for a 100x100 pixel image is approximately 5s. We demonstrate the systems ability to image in-vivo changes in skin perfusion, induced by standard non-invasive physiological techniques.
机译:相位分辨多普勒光学相干断层扫描是一种最新报道的技术,可以同时以高速分辨率对组织结构和血液进行成像。光学装置包括一个基于光纤的迈克尔逊干涉仪,在源臂中带有一个1300nm的超发光二极管。输出功率为0.6mW,带宽为50nm。参考臂包含一个基于光栅的傅立叶域快速扫描延迟线和一个电光相位调制器,以提供稳定的参考频率(800kHz)。从同一个位置以400Hz采样的十次轴向扫描被处理,以根据从希尔伯特变换得到的重建相位信息生成结构和速度数据。样品臂探针将来自光纤的光聚焦到组织中,产生直径约20μm的束斑。探头安装在线性平移台上,该线性平移台在十次轴向扫描的组之间产生10μm的横向台阶。根据每个位置的十次连续扫描的平均相移来计算每个像素中的多普勒频移。 100x100像素图像的采集时间约为5s。我们证明了系统能够通过标准的非侵入性生理技术诱发皮肤灌注中体内变化的图像。

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