Hanyuda Naoto, Akiyama Hideo, Shimoda Yukitoshi, Mukai Ryo, Sano Morihiko, Shinohara Yoichiro, Kishi Shoji
Department of Ophthalmology, Gunma University Graduate School of Medicine, Gunma, Japan.
Ota Kinen Hospital, Gunma, Japan.
Invest Ophthalmol Vis Sci. 2017 Nov 1;58(13):5856-5861. doi: 10.1167/iovs.17-22223.
To investigate the hemodynamics of the choriocapillaris in primate eyes under elevated intraocular pressure.
Indocyanine green angiography (ICGA) and fluorescein angiography (FA) were performed in two monkeys after elevation of the intraocular pressure (IOP) to 35 and 60 mm Hg.
ICGA and FA showed no perfusion delays in the choriocapillaris at 35 mm Hg. The slow dye filling at 60 mm Hg made it possible to observe the early phase angiography sequence. During ICGA, C-shaped precapillary arterioles multiplied in numbers and emerged in the posterior pole, forming the outer rim of the numerous mosaics or lobules. Dye subsequently infiltrated into the lobules. During FA, after numerous hyperfluorescent spots emerged in the posterior pole, each of the spots enlarged and became numerous mosaics with a dark outer rim. When the FA and ICGA images were superimposed, the C-shaped arterioles observed during the ICGA were shown to correspond to the outer dark rim of the mosaics seen during the FA. The earliest dye emergence was delayed during FA compared to ICGA, with 13 seconds elapsing in monkey 1 and 4 seconds in monkey 2. The horizontal diameter of the optic disc contained three to four mosaics in both monkeys.
The choriocapillaris lobules appear to be supplied from peripheral arterioles, not central. After blood perfuses the lobules, it drains into the venules at the center. Mosaic or lobular patterns during FA may reflect extravasated fluorescein from the fenestrated choriocapillaris.
研究灵长类动物眼内压升高时脉络膜毛细血管的血流动力学。
在两只猴子眼内压升高至35和60 mmHg后,进行吲哚菁绿血管造影(ICGA)和荧光素血管造影(FA)。
ICGA和FA显示,眼内压为35 mmHg时脉络膜毛细血管无灌注延迟。眼内压为60 mmHg时染料填充缓慢,使得观察早期血管造影序列成为可能。在ICGA过程中,C形毛细血管前小动脉数量增多并出现在后极,形成众多镶嵌或小叶的外缘。随后染料渗入小叶。在FA过程中,后极出现众多高荧光点后,每个点扩大并变成带有深色外缘的众多镶嵌。当FA和ICGA图像叠加时,ICGA过程中观察到的C形小动脉与FA过程中看到的镶嵌的外缘暗边相对应。与ICGA相比,FA中最早的染料出现延迟,猴子1延迟13秒,猴子2延迟4秒。两只猴子视盘的水平直径均包含三到四个镶嵌。
脉络膜毛细血管小叶似乎由周边小动脉而非中央小动脉供血。血液灌注小叶后,排入中央的小静脉。FA过程中的镶嵌或小叶模式可能反映了来自有窗孔的脉络膜毛细血管的渗漏荧光素。