Zhu L, Zheng Y, von Kerczek C H, Topoleski L D T, Flower R W
Department of Mechanical Engineering, University of Maryland, Baltimore County, Baltimore, MD 21250, USA.
J Biomech Eng. 2006 Apr;128(2):203-9. doi: 10.1115/1.2165692.
Indocyanine green (ICG) dye angiography has been used by ophthalmologists for routine examination of the choroidal vasculature in human eyes for more than 20 years. In this study, a new approach is developed to extract information from ICG dye angiograms about blood velocity distribution in the choriocapillaris and its feeding blood vessels. ICG dye fluorescence intensity rise and decay curves are constructed for each pixel location in each image of the choriocapillaris in an ICG angiogram. It is shown that at each instant of time the magnitude of the local instantaneous dye velocity in the choriocapillaris is proportional to both the slope of the ICG dye fluorescence intensity curve and the dye concentration. This approach leads to determination of the absolute value of blood velocity in the choriocapillaris, assuming an appropriate scaling, or conversion factor can be determined. It also enables comparison of velocities in different regions of the choriocapillaris, since the conversion factor is independent of the vessel location. The computer algorithm developed in this study can be used in clinical applications for diagnostic purposes and for assessment of the efficacy of laser therapy in human eyes.
吲哚青绿(ICG)染料血管造影术已被眼科医生用于人类眼睛脉络膜血管系统的常规检查超过20年。在本研究中,开发了一种新方法,用于从ICG染料血管造影照片中提取有关脉络膜毛细血管及其供血血管中血流速度分布的信息。针对ICG血管造影照片中脉络膜毛细血管的每个图像的每个像素位置,构建ICG染料荧光强度上升和衰减曲线。结果表明,在每个时刻,脉络膜毛细血管中局部瞬时染料速度的大小与ICG染料荧光强度曲线的斜率和染料浓度均成正比。假设可以确定适当的比例或转换因子,这种方法可用于确定脉络膜毛细血管中血流速度的绝对值。它还能够比较脉络膜毛细血管不同区域的速度,因为转换因子与血管位置无关。本研究中开发的计算机算法可用于临床应用中的诊断目的以及评估人类眼睛激光治疗的疗效。