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等长运动期间视神经乳头和视网膜血流调节的激光散斑血流图评估

Optic nerve head and retinal blood flow regulation during isometric exercise as assessed with laser speckle flowgraphy.

作者信息

Witkowska Katarzyna J, Bata Ahmed M, Calzetti Giacomo, Luft Nikolaus, Fondi Klemens, Wozniak Piotr A, Schmidl Doreen, Bolz Matthias, Popa-Cherecheanu Alina, Werkmeister René M, Garhöfer Gerhard, Schmetterer Leopold

机构信息

Department of Clinical Pharmacology, Medical University of Vienna, Vienna, Austria.

Department of Ophthalmology, University of Parma, Parma, Italy.

出版信息

PLoS One. 2017 Sep 12;12(9):e0184772. doi: 10.1371/journal.pone.0184772. eCollection 2017.

Abstract

UNLABELLED

The aim of the present study was to investigate regulation of blood flow (BF) in the optic nerve head (ONH) and a peripapillary region (PPR) during an isometric exercise-induced increase in ocular perfusion pressure (OPP) using laser speckle flowgraphy (LSFG) in healthy subjects. For this purpose, a total of 27 subjects was included in this study. Mean blur rate in tissue (MT) was measured in the ONH and in a PPR as well as relative flow volume (RFV) in retinal arteries (ART) and veins (VEIN) using LSFG. All participants performed isometric exercise for 6 minutes during which MT and mean arterial pressure were measured every minute. From these data OPP and pressure/flow curves were calculated. Isometric exercise increased OPP, MTONH and MTPRR. The relative increase in OPP (78.5 ± 19.8%) was more pronounced than the increase in BF parameters (MTONH: 18.1 ± 7.7%, MTPRR: 21.1 ± 8.3%, RFVART: 16.5 ±12.0%, RFVVEIN: 17.7 ± 12.4%) indicating for an autoregulatory response of the vasculature. The pressure/flow curves show that MTONH, MTPRR, RFVART, RFVVEIN started to increase at OPP levels of 51.2 ± 2.0%, 58.1 ± 2.4%, 45.6 ± 1.9% and 45.6 ± 1.9% above baseline. These data indicate that ONHBF starts to increase at levels of approx. 50% increase in OPP: This is slightly lower than the values we previously reported from LDF data. Signals from the PPR may have input from both, the retina and the choroid, but the relative contribution is unknown. In addition, retinal BF appears to increase at slightly lower OPP values of approximately 45%. LSFG may be used to study ONH autoregulation in diseases such as glaucoma.

TRIAL REGISTRATION

ClinicalTrials.gov NCT02102880.

摘要

未标注

本研究的目的是利用激光散斑血流图(LSFG),在健康受试者中,研究等长运动引起眼灌注压(OPP)升高期间,视神经乳头(ONH)和视乳头周围区域(PPR)的血流(BF)调节情况。为此,本研究共纳入27名受试者。使用LSFG测量ONH和PPR中的组织平均模糊率(MT)以及视网膜动脉(ART)和静脉(VEIN)中的相对血流量(RFV)。所有参与者进行6分钟的等长运动,在此期间每分钟测量MT和平均动脉压。根据这些数据计算OPP和压力/流量曲线。等长运动使OPP、MTONH和MTPRR升高。OPP的相对升高(78.5±19.8%)比BF参数的升高更明显(MTONH:18.1±7.7%,MTPRR:21.1±8.3%,RFVART:16.5±12.0%,RFVVEIN:17.7±12.4%),表明血管系统存在自动调节反应。压力/流量曲线显示,MTONH、MTPRR、RFVART、RFVVEIN在OPP水平高于基线51.2±2.0%、58.1±2.4%、45.6±1.9%和45.6±1.9%时开始升高。这些数据表明,ONHBF在OPP升高约50%时开始升高:这略低于我们之前从激光多普勒血流仪(LDF)数据中报告的值。来自PPR的信号可能来自视网膜和脉络膜两者,但相对贡献尚不清楚。此外,视网膜BF似乎在略低的OPP值约45%时升高。LSFG可用于研究青光眼等疾病中的ONH自动调节。

试验注册

ClinicalTrials.gov NCT02102880。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da0a/5595424/e0b79aa58ebb/pone.0184772.g001.jpg

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