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Differences of Retinal Blood Flow Between Arteries and Veins Determined by Laser Speckle Flowgraphy in Healthy Subjects

机译:通过激光散斑造影确定健康受试者的动脉和静脉之间的视网膜血流差异

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摘要

To characterize the total retinal blood flow determined by laser speckle flowgraphy (LSFG) of healthy subjects.This prospective cross-sectional study was conducted at the Nagoya University Hospital. One hundred fifteen right eyes of 115 healthy subjects (mean age: 39.4 ± 16.1 years) were studied. The total blood flow in the retinal arteries and veins around the optic nerve head was measured separately using the total retinal flow index (TRFI), which represents blood flow volume. The lumen diameters of the retinal vessels determined by LSFG and by adaptive optics (AO) camera were compared. The images obtained by LSFG and AO camera were merged, and the distribution of the mean blur rates (MBRs), which represent the velocities of the erythrocytes, was evaluated on the images.The mean TRFI in veins (1812 ± 445, arbitral units) was significantly higher than that in arteries (1455 ± 348, arbitral units; P < 0.001). Linear regression analysis showed a significant correlation between the TRFI in the arteries and veins (P < 0.001). Linear regression analysis also showed a highly significant correlation between the diameters of arteries and veins determined by LSFG and by the AO camera (arteries, r = 0.94, P < 0.001; veins, r = 0.92, P < 0.001). The ratios of the lumen diameters determined by LSFG to that by AO camera was significant lower in arteries (0.068 ± 0.005, arbitral units) than in veins (0.074 ± 0.007, arbitral units) (P < 0.001). The MBRs of veins were homogeneous throughout the width of the lumen; however, the MBRs in the arteries were higher at the center and lower close to the walls of the lumen.The higher TRFIs in the veins than in the arteries indicate that there is a smaller volume of retinal blood flow in arteries than veins. However, the possibility remains that LSFG has inherent problem that the arterial lumen diameter determined by LSFG is smaller than actual one because of the characteristics of arteries. This would result in a smaller volume of retinal blood flow in the arteries than veins in LSFG.
机译:为了表征健康受试者的激光散斑造影(LSFG)确定的视网膜总血流,这项前瞻性横断面研究在名古屋大学医院进行。对115名健康受试者(平均年龄:39.4±16.1岁)的115只右眼进行了研究。使用代表血流量的总视网膜流量指数(TRFI)分别测量视神经头周围的视网膜动脉和静脉中的总血流量。比较了由LSFG和自适应光学(AO)相机确定的视网膜血管的管腔直径。合并由LSFG和AO相机获得的图像,并在图像上评估代表红细胞速度的平均模糊率(MBR)的分布。静脉的平均TRFI(1812±445,仲裁单位)明显高于动脉(1455±±348,仲裁单位; P <0.001)。线性回归分析显示,动脉和静脉中的TRFI之间存在显着相关性(P <0.001)。线性回归分析还显示,由LSFG和AO相机确定的动脉和静脉的直径之间具有高度显着的相关性(动脉,r = 0.94,P <0.001;静脉,r = 0.92,P <0.001)。由LSFG确定的管腔直径与由AO相机确定的管腔直径之比在动脉中(0.068±±0.005,任意单位)显着低于在静脉(0.074±±0.007,任意单位)中(P <0.001)。在整个管腔宽度内,静脉的MBR均一;然而,动脉中的MBR较高,而靠近管腔壁​​的MBR较低。静脉中的TRFI高于动脉中的TRFI,这表明动脉中的视网膜血流量比静脉小。然而,由于动脉的特性,LSFG仍然存在固有问题,即由LSFG确定的动脉管腔直径小于实际直径。这将导致动脉中的视网膜血流比LSFG中的静脉小。

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