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利用可见光光学相干断层扫描技术监测大鼠急性眼压升高时的视网膜反应。

Monitoring retinal responses to acute intraocular pressure elevation in rats with visible light optical coherence tomography.

作者信息

Pi Shaohua, Hormel Tristan T, Wei Xiang, Cepurna William, Camino Acner, Guo Yukun, Huang David, Morrison John, Jia Yali

机构信息

Oregon Health and Science University, Casey Eye Institute, Portland, Oregon, United States.

出版信息

Neurophotonics. 2019 Oct;6(4):041104. doi: 10.1117/1.NPh.6.4.041104. Epub 2019 Jul 12.

Abstract

Elevated intraocular pressure (IOP) is an important risk factor for glaucoma. However, the role of IOP in glaucoma progression, as well as retinal physiology in general, remains incompletely understood. We demonstrate the use of visible light optical coherence tomography to measure retinal responses to acute IOP elevation in Brown Norway rats. We monitored retinal responses in reflectivity, angiography, blood flow, oxygen saturation ( ), and oxygen metabolism over a range of IOP from 10 to 100 mmHg. As IOP was elevated, nerve fiber layer reflectivity was found to decrease. Vascular perfusion in the three retinal capillary plexuses remained steady until IOP exceeded 70 mmHg and arterial flow was noted to reverse periodically at high IOPs. However, a significant drop in total retinal blood flow was observed first at 40 mmHg. As IOP increased, the venous demonstrated a gradual decrease despite steady arterial , which is consistent with increased arterial-venous oxygen extraction across the retinal capillary beds. Calculated total retinal oxygen metabolism was steady, reflecting balanced responses of blood flow and oxygen extraction, until IOP exceeded 40 mmHg, and fell to 0 at 70 and 80 mmHg. Above this, measurements were unattainable. All measurements reverted to baseline when the IOP was returned to 10 mmHg, indicating good recovery following acute pressure challenge. These results demonstrate the ability of this system to monitor retinal oxygen metabolism noninvasively and how it can help us understand retinal responses to elevated IOP.

摘要

眼压升高是青光眼的一个重要风险因素。然而,眼压在青光眼进展中的作用,以及一般视网膜生理学,仍未被完全理解。我们展示了使用可见光光学相干断层扫描来测量棕色挪威大鼠急性眼压升高时的视网膜反应。我们在10至100 mmHg的眼压范围内监测了视网膜在反射率、血管造影、血流、氧饱和度( )和氧代谢方面的反应。随着眼压升高,发现神经纤维层反射率降低。三个视网膜毛细血管丛中的血管灌注在眼压超过70 mmHg之前保持稳定,并且在高眼压时动脉血流被注意到会周期性逆转。然而,在40 mmHg时首先观察到视网膜总血流量显著下降。随着眼压升高,尽管动脉 稳定,但静脉 显示出逐渐下降,这与视网膜毛细血管床动静脉氧摄取增加一致。计算得出的视网膜总氧代谢在眼压超过40 mmHg之前是稳定的,反映了血流和氧摄取的平衡反应,在70和80 mmHg时降至0。在此之上,测量无法进行。当眼压恢复到10 mmHg时,所有测量值都恢复到基线,表明急性压力挑战后恢复良好。这些结果证明了该系统无创监测视网膜氧代谢的能力,以及它如何帮助我们理解视网膜对眼压升高的反应。

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