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Analysis of contrast and motion signals generated by human blood constituents in capillary flow

机译:人血成分在毛细血管流中产生的对比度和运动信号分析

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The flow of individual corpuscles through retinal capillaries may now be observed noninvasively by using adaptive optics (AO). To explore their imaging properties, we imaged retinal capillary flow in two healthy subjects at 593 nm with a flood-based AO ophthalmoscope, at a variety of retinal locations and levels of defocus. The image intensity of red cells and plasma depends upon capillary depth relative to focus: red cells appear brighter than background, and plasma darker, for capillaries posterior to focus. The reverse is true for capillaries anterior to focus. Contrast reversals were obtained over 0.05 D (~14 μm), which are well within the typical undulations in depth of retinal capillaries. We relate these observations to phase-contrast defocusing microscopy. This defocusing effect confounds flow measurements, which rely on correlation of image intensity between successive locations along the same capillary, a requirement made further difficult by high physiological variability in flow. Peak correlation was maintained >0.25 over a distance of 22 ± 15 μm (roughly the spacing between red cells) and over a duration of 154 ± 49 ms (roughly eight times the temporal period between red cells). We provide a 2D correlogram approach that significantly improves robustness in the face of optical and physiological variability, compared to the traditional spatiotemporal plot, without requiring additional data.
机译:现在可以使用自适应光学系统(AO)来无创地观察单个小球通过视网膜毛细血管的流动。为了探究它们的成像特性,我们使用了基于洪水的AO检眼镜在两个不同的视网膜位置和散焦水平下,以593 nm对两个健康受试者的视网膜毛细血管流进行了成像。红细胞和血浆的图像强度取决于相对于焦点的毛细血管深度:对于后焦点的毛细血管,红细胞显得比背景更亮,血浆更暗。对于前侧集中的毛细血管则相反。对比度反转超过0.05 D(〜14μm),恰好在视网膜毛细血管深度的典型波动范围内。我们将这些观察结果与相差散焦显微镜相联系。这种散焦效果会混淆流量测量,而流量测量依赖于沿着同一毛细管的连续位置之间图像强度的相关性,由于流量的高生理可变性,这一要求变得更加困难。在22±15μm的距离(大约是红细胞之间的间隔)和154±49 ms的持续时间内(大约是红细胞之间的时间周期的八倍),峰值相关性保持> 0.25。与传统的时空图相比,我们提供了一种二维相关图方法,可以显着提高面对光学和生理变化时的鲁棒性,而无需其他数据。

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