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The Source of Moving Particles in Parafoveal Capillaries Detected by Adaptive Optics Scanning Laser Ophthalmoscopy

机译:自适应光学扫描激光检眼镜检测到的小凹状毛细血管中运动颗粒的来源

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Purpose.: To investigate the source of moving particles in parafoveal capillaries detected by adaptive optics scanning laser ophthalmoscopy (AO-SLO). Methods.: AO-SLO videos were acquired from the parafoveal areas of eyes of healthy subjects. The gray-scale values inside and outside the moving particles were measured and compared. Thereafter, successive frames of the captured videos were analyzed under higher magnification to detect changes in the gray values of bright spots inside the capillaries, before and during passage of the particles. Simultaneously, changes in the gray values of areas without the bright spots were measured for comparison. Then, the authors analyzed the packing arrangements of the bright spots in the particles, and measured the particle velocity using spatiotemporal images of the target capillary. Results.: There were no significant differences in the gray values between the moving particles and the cone mosaic outside the parafoveal capillaries adjacent to the particles. The gray value of the bright spots in the dark shadow of the vessels increased when the particles passed through, while the dark areas without bright spots remained dark. There were no significant differences in the packing arrangements between the bright spots and surrounding cone mosaic. Further, the concordance rate of packing arrangements of bright spots between two consecutive moving particles in the capillary was 95.8%. The mean particle velocity was 1.34 ?± 0.42 mm/s. Conclusions.: The particles moving in the capillaries are suggested to be reflections of photoreceptor aggregates that pass through circulating transparent objects such as leukocytes or plasma gaps.
机译:目的:研究自适应光学扫描激光检眼镜(AO-SLO)检测到的小凹状毛细血管中运动颗粒的来源。方法:AO-SLO视频是从健康受试者的眼中央凹区域采集的。测量并比较了运动颗粒内部和外部的灰度值。此后,在更高的放大倍率下分析捕获的视频的连续帧,以检测微粒通过之前和期间毛细管内部亮点的灰度值变化。同时,测量没有亮点的区域的灰度值变化以进行比较。然后,作者分析了颗粒中亮点的堆积排列,并使用目标毛细管的时空图像测量了颗粒速度。结果:在运动颗粒和与该颗粒相邻的小窝旁毛细血管外部的圆锥镶嵌之间的灰度值没有显着差异。当颗粒通过时,容器暗阴影中亮点的灰度值增加,而没有亮点的暗区保持黑暗。亮点和周围的圆锥形马赛克之间的包装安排没有显着差异。此外,毛细管中两个连续移动的粒子之间的亮点的堆积排列的一致率为95.8%。平均粒子速度为1.34±0.42mm / s。结论:毛细血管中移动的颗粒被认为是光感受器聚集体的反射,它们穿过循环的透明物体,如白细胞或血浆间隙。

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