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活体人眼中眼内压升高的视网膜电生理反应。

Retinal electrophysiologic response to IOP elevation in living human eyes.

机构信息

Department of Ophthalmology and Visual Sciences, The University of Alabama at Birmingham School of Medicine, Birmingham, AL, United States.

Department of Neurobiology, The University of Alabama at Birmingham School of Medicine, Birmingham, AL, United States.

出版信息

Exp Eye Res. 2023 Apr;229:109420. doi: 10.1016/j.exer.2023.109420. Epub 2023 Feb 16.

Abstract

PURPOSE

The relationships between intraocular pressure (IOP), ocular perfusion pressure (OPP), retinal perfusion, and retinal electrophysiologic responses have been explored experimentally across several animal models. These studies have demonstrated that elevated IOP reduces OPP, and when this reduction in OPP exceeds the autoregulatory capacity of the retina vasculature, retinal perfusion and electrophysiologic responses are reduced. This study aimed to evaluate these interactions for the first time in the living human eye.

METHODS

Five eyes from three research-consented brain-dead organ donors underwent optical coherence tomography with angiographic (OCT/A; Spectralis, Heidelberg Engineering) and electroretinographic (ERG, Diagnosys LLC) measurements while IOP was manometrically-elevated stepwise to pressures of 10, 30 and 50 mmHg. Systemic blood pressure (BP) was monitored continuously during testing. Correlation analysis was applied to assess association between ERG and OPP changes. In a single eye, prolonged IOP elevation was induced with viscoelastic injection and serial ERG measurements were obtained.

RESULTS

Reductions in inner retinal function defined by photopic ERG were observed with elevation in IOP and concomitant reduction in OPP. Reductions, especially in b-wave, and photopic negative response (PhNR) amplitudes and implicit times were significantly correlated with elevation in IOP and reduction in OPP. There were more appreciable changes in perfusion and functional responses in eyes tested while systemic blood pressure was lower. With prolonged IOP elevation, selective loss of the PhNR response was observed.

CONCLUSIONS

In the living human eye, retinal perfusion and inner retinal function are acutely impacted by elevation of IOP, and this impact is related to systemic BP and OPP. This novel approach provides a viable model to study the autoregulatory responses to IOP elevation in the living human eye.

摘要

目的

在几种动物模型中,已经通过实验探索了眼压(IOP)、眼灌注压(OPP)、视网膜灌注和视网膜电生理反应之间的关系。这些研究表明,IOP 升高会降低 OPP,当这种 OPP 降低超过视网膜血管的自动调节能力时,视网膜灌注和电生理反应就会降低。本研究旨在首次在活体人眼中评估这些相互作用。

方法

在三名脑死亡器官捐献者的五只眼中,进行了光学相干断层扫描血管造影(OCT/A;Spectralis,Heidelberg Engineering)和视网膜电图(ERG,Diagnosys LLC)测量,同时 IOP 通过眼压计逐步升高至 10、30 和 50 mmHg。在测试过程中连续监测系统血压(BP)。应用相关分析评估 ERG 和 OPP 变化之间的关联。在一只眼中,通过粘性物质注射诱导长时间的 IOP 升高,并获得连续的 ERG 测量。

结果

随着 IOP 的升高和 OPP 的相应降低,观察到光激发 ERG 定义的内视网膜功能降低。降低,特别是 b 波和光激发负反应(PhNR)幅度和潜伏期,与 IOP 升高和 OPP 降低显著相关。在系统血压较低时测试的眼睛中,灌注和功能反应的变化更为明显。随着 IOP 升高的延长,观察到 PhNR 反应的选择性丧失。

结论

在活体人眼中,眼压升高会立即影响视网膜灌注和内视网膜功能,这种影响与系统血压和 OPP 有关。这种新方法为研究活体人眼中眼压升高的自动调节反应提供了可行的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cfb/11048619/a4ad54c538aa/nihms-1913817-f0001.jpg

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