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[使用扫描激光多普勒血流仪进行二维映射以及视网膜和乳头体微循环研究]

[2-dimensional mapping and retinal and papillary microcirculation using scanning laser Doppler flowmetry].

作者信息

Michelson G, Groh M, Langhans M, Schmauss B

机构信息

Universitäts-Augenklinik Erlangen-Nürnberg, Erlangen.

出版信息

Klin Monbl Augenheilkd. 1995 Sep;207(3):180-90. doi: 10.1055/s-2008-1035365.

Abstract

PURPOSE

To present clinical applications of a new non-invasive method imaging in a high-definition the topography of perfused retinal vessels.

METHOD

By a combination of a laser Doppler flowmeter with a scanning laser system the perfusion of the retina and the optic nerve head is visualized and quantified. The principles of measuring blood flow by Laser Doppler Flowmetry are based on the optical Doppler effect: laser light scattered by a moving particle is shifted in frequency by an amount delta f. Our data acquisition and evaluation system is a modified laser scanning tomograph. The technical data are: retinal area of measurement 2.7 mm x 0.7 mm, 10 degree-field with 256 points x 64 lines, measurement accuracy 10 microns, wavelength 670 nm and 790 nm, light power 100 microW, data acquisition time 2,048 s. Every line is scanned 128 times by a line-sampling rate of 4,000 Hz. By performing a discrete Fast Fourier Transformation over 128 intensities of each retinal point the laser Doppler-shift is calculated for each retinal point. With these data a 2-D map with 256 x 64 points of the retinal perfusion is created. The brightness of the picture-point is coded by the value of the Doppler shift. We estimated the reliability and the validity of the method. Perfusion-pictures of the superficial retinal layer and in the optic nerve head were presented.

RESULTS

The reliability-coefficients r1 of "Flow", "Volume" and "Velocity" were 0.85, 0.83, and 0.85 respectively. The blood flow measurements by the presented method ("Scanning Laser Doppler Flowmetry") in an artificial capillary gave a linear relationship (r-value 0.973, p < 0.00001) between defined blood velocities and the measured blood flow. By the confocal technique, dependent on the focus, capillaries of the retinal superficial vasculature of the optic nerve head became visible with a high resolution. Off line the blood flow of areas of 110 microns x 110 microns were calculated in terms of laser Doppler flowmetry.

CONCLUSION

"Scanning Laser Doppler Flowmetry" facilitates the visualisation of perfused retinal capillaries and vessels in high resolution. The representation of the function of the retinal circulation by SLDF leads to an image similar to the anatomical situation. The 2-dimensional mapping of local blood flow leads to a physiological picture of the retinal perfusion with visible vessels and capillaries.

摘要

目的

介绍一种用于高清晰度成像灌注视网膜血管地形图的新型非侵入性方法的临床应用。

方法

通过将激光多普勒血流仪与扫描激光系统相结合,对视网膜和视神经乳头的灌注进行可视化和量化。激光多普勒血流仪测量血流的原理基于光学多普勒效应:由运动粒子散射的激光在频率上偏移量为Δf。我们的数据采集和评估系统是一种改进的激光扫描断层扫描仪。技术数据如下:视网膜测量面积为2.7毫米×0.7毫米,10度视野,256点×64线,测量精度为10微米,波长为670纳米和790纳米,光功率为100微瓦,数据采集时间为2048秒。每条线以4000赫兹的线采样率扫描128次。通过对每个视网膜点的128个强度进行离散快速傅里叶变换,计算每个视网膜点的激光多普勒频移。利用这些数据创建一个256×64点的视网膜灌注二维图。图像点的亮度由多普勒频移值编码。我们评估了该方法的可靠性和有效性。展示了视网膜浅层和视神经乳头的灌注图像。

结果

“流量”“体积”和“速度”的可靠性系数r1分别为0.85、0.83和0.85。用所介绍的方法(“扫描激光多普勒血流仪”)在人工毛细血管中进行的血流测量显示,在规定的血流速度与测量的血流之间存在线性关系(r值为0.973,p<0.00001)。通过共聚焦技术,根据焦点不同,视神经乳头视网膜浅层血管系统的毛细血管以高分辨率可见。离线状态下,根据激光多普勒血流仪计算110微米×110微米区域的血流。

结论

“扫描激光多普勒血流仪”有助于高分辨率地可视化灌注视网膜毛细血管和血管。SLDF对视网膜循环功能的呈现产生了与解剖情况相似的图像。局部血流的二维映射产生了带有可见血管和毛细血管的视网膜灌注生理图像。

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