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Effects of water drinking test on ocular blood flow waveform parameters: A laser speckle flowgraphy study

机译:饮水试验对眼血流波形参数的影响:激光散斑流式成像研究

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摘要

The water-drinking test (WDT) is a provocative test used in glaucoma research to assess the effects of elevated intraocular pressure (IOP). Defective autoregulation due to changes in perfusion pressure may play a role in the pathophysiology of several ocular diseases. This study aims to examine the effects of WDT on ocular blood flow (in the form of pulse waveform parameters obtained using laser speckle flowgraphy) to gain insight into the physiology of ocular blood flow and its autoregulation in healthy individuals. Changes in pulse waveform parameters of mean blur rate (MBR) in the entire optic nerve head (ONH), the vasculature of the ONH, the tissue area of the ONH, and the avascular tissue area located outside of the ONH were monitored over time. Significant increases in the falling rate of MBR over the entire ONH and its tissue area and decreases in blowout time (BOT) of the tissue area were observed only at 10 minutes after water intake. Significant increases in the skew of the waveform and the falling rate were observed in the vasculature of the ONH at 40 and 50 minutes after water intake, respectively. In the avascular region of the choroid, the average MBR increased significantly up to 30 minutes after water intake. Furthermore, the rising rate in this region increased significantly at 20 and 40 minutes, and the falling rate and acceleration-time index were both significantly increased at 40 minutes after water intake. Our results indicate the presence of effective autoregulation of blood flow at the ONH after WDT. However, in the choroidal region, outside of the ONH, effective autoregulation was not observed until 30 minutes after water intake in healthy study participants. These pulse waveform parameters could potentially be used in the diagnosis and/or monitoring of patients with glaucoma.
机译:饮水试验(WDT)是一种用于青光眼研究的刺激性试验,用于评估眼内压升高(IOP)的影响。由于灌注压力的变化而导致的自调节功能异常可能在几种眼部疾病的病理生理中起作用。这项研究旨在检查WDT对眼部血流的影响(以使用激光散斑流描记法获得的脉冲波形参数的形式),以了解健康个体中眼部血流的生理及其自动调节。随时间监视整个视神经头(ONH),ONH的脉管系统,ONH的组织区域以及ONH外部的无血管组织区域的平均模糊率(MBR)的脉冲波形参数的变化。仅在吸水后10分钟观察到MBR在整个ONH及其组织区域的下降速率显着增加,并且组织区域的喷出时间(BOT)减小。分别在进水后40和50分钟,在ONH的脉管系统中观察到波形的偏斜和下降速率显着增加。在脉络膜的无血管区域,取水后30分钟的平均MBR显着增加。此外,该区域的上升速度在吸水后20分钟和40分钟时显着增加,并且下降速度和加速时间指数均显着增加。我们的结果表明在WDT后ONH处存在有效的血流自动调节。然而,在健康研究参与者饮水后30分钟,在ONH以外的脉络膜区域,未观察到有效的自动调节。这些脉冲波形参数可以潜在地用于青光眼患者的诊断和/或监测。

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