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使用OCT+ERG联合系统测量大鼠视网膜视觉诱发功能与血流变化的相关性

Correlation of Visually Evoked Functional and Blood Flow Changes in the Rat Retina Measured With a Combined OCT+ERG System.

作者信息

Tan Bingyao, Mason Erik, MacLellan Benjamin, Bizheva Kostadinka K

机构信息

Department of Physics and Astronomy, University of Waterloo, Waterloo, Ontario, Canada.

Department of Physics and Astronomy, University of Waterloo, Waterloo, Ontario, Canada 2School of Optometry and Vision Science, University of Waterloo, Waterloo, Ontario, Canada 3Department of System Design Engineering, University of Waterloo, Waterloo, Ontario, Canada.

出版信息

Invest Ophthalmol Vis Sci. 2017 Mar 1;58(3):1673-1681. doi: 10.1167/iovs.17-21543.

Abstract

PURPOSE

To correlate visually evoked functional and blood flow changes in the rat retina measured simultaneously with a combined optical coherence tomography and electroretinography system (OCT+ERG).

METHODS

Male Brown Norway (n = 6) rats were dark adapted and anesthetized with ketamine/xylazine. Visually evoked changes in the retinal blood flow (RBF) and functional response were measured simultaneously with an OCT+ERG system with 3-μm axial resolution in retinal tissue and 47-kHz image acquisition rate. Both single flash (10 and 200 ms) and flicker (10 Hz, 20% duty cycle, 1- and 2-second duration) stimuli were projected onto the retina with a custom visual stimulator, integrated into the OCT imaging probe. Total axial RBF was calculated from circular Doppler OCT scans by integrating over the arterial and venal flow.

RESULTS

Temporary increase in the RBF was observed with the 10- and 200-ms continuous stimuli (∼1% and ∼4% maximum RBF change, respectively) and the 10-Hz flicker stimuli (∼8% for 1-second duration and ∼10% for 2-second duration). Doubling the flicker stimulus duration resulted in ∼25% increase in the RBF peak magnitude with no significant change in the peak latency. Single flash (200 ms) and flicker (10 Hz, 1 second) stimuli of the same illumination intensity and photon flux resulted in ∼2× larger peak RBF magnitude and ∼25% larger RBF peak latency for the flicker stimulus.

CONCLUSIONS

Short, single flash and flicker stimuli evoked measureable RBF changes with larger RBF magnitude and peak latency observed for the flicker stimuli.

摘要

目的

使用光学相干断层扫描和视网膜电图联合系统(OCT+ERG)同时测量大鼠视网膜中视觉诱发的功能和血流变化,并进行相关性分析。

方法

选用雄性挪威棕色大鼠(n = 6),使其暗适应后用氯胺酮/赛拉嗪麻醉。使用OCT+ERG系统同时测量视网膜血流(RBF)的视觉诱发变化和功能反应,该系统在视网膜组织中的轴向分辨率为3μm,图像采集速率为47kHz。通过定制的视觉刺激器将单次闪光(10和200毫秒)和闪烁(10Hz,20%占空比,1秒和2秒持续时间)刺激投射到视网膜上,该刺激器集成在OCT成像探头中。通过对动脉和静脉血流进行积分,从圆形多普勒OCT扫描中计算出总轴向RBF。

结果

在10毫秒和200毫秒的连续刺激下(最大RBF变化分别约为1%和4%)以及10Hz的闪烁刺激下(1秒持续时间约为8%,2秒持续时间约为10%)观察到RBF暂时增加。将闪烁刺激持续时间加倍导致RBF峰值幅度增加约25%,而峰值潜伏期无显著变化。相同光照强度和光子通量的单次闪光(200毫秒)和闪烁(10Hz,1秒)刺激导致闪烁刺激的RBF峰值幅度约大2倍,RBF峰值潜伏期约大25%。

结论

短时间的单次闪光和闪烁刺激诱发了可测量的RBF变化,闪烁刺激观察到的RBF幅度和峰值潜伏期更大。

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