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用激光散斑血流图评估小鼠视网膜血流调节对闪烁刺激和全身高氧的纵向稳定性。

Longitudinal stability of retinal blood flow regulation in response to flicker stimulation and systemic hyperoxia in mice assessed with laser speckle flowgraphy.

作者信息

Hanaguri Junya, Yokota Harumasa, Watanabe Masahisa, Kuo Lih, Yamagami Satoru, Nagaoka Taiji

机构信息

Division of Ophthalmology, Department of Visual Sciences, Nihon University School of Medicine, 30-1 Oyaguchi-Kamicho, Itabashi-ku, Tokyo, 173-8610, Japan.

Department of Medical Physiology, Texas A&M University Health Science Center, Bryan, TX, USA.

出版信息

Sci Rep. 2020 Nov 13;10(1):19796. doi: 10.1038/s41598-020-75296-y.

Abstract

This study aimed to evaluate longitudinal changes in retinal blood flow in response to flicker stimulation and systemic hyperoxia in mice using a laser speckle flowgraphy (LSFG-Micro). The retinal blood flow in vascular area surrounding the optic nerve head was measured in 8-week-old male mice every 2 weeks until age 20-week. The coefficient of variation of retinal blood flow under resting condition was analyzed every 2 weeks to validate the consistency of the measurement. On day 1 of the experiment, retinal blood flow was assessed every 20 s for 6 min during and after 3 min flicker light (12 Hz) stimulation; on day 2, retinal blood flow was measured every minute for 20 min during and after 10 min systemic hyperoxia; and on day 3, electroretinography (ERG) was performed. Body weight, systemic blood pressure, and ocular perfusion pressure increased significantly with age, but the resting retinal blood flow and ERG parameters remained unchanged. Retinal blood flow significantly increased with flicker stimulation and decreased with systemic hyperoxia, independent of age. The LSFG-Micro provides consistent and reproducible retinal blood flow measurement in adult mice. Longitudinal assessments of retinal blood flow in response to flicker stimulation and systemic hyperoxia may be useful indexes for noninvasive monitoring of vascular function in retinas.

摘要

本研究旨在使用激光散斑血流图(LSFG-Micro)评估小鼠视网膜血流对闪烁刺激和全身高氧的纵向变化。在8周龄雄性小鼠中,每2周测量一次视神经乳头周围血管区域的视网膜血流,直至20周龄。每2周分析一次静息状态下视网膜血流的变异系数,以验证测量的一致性。在实验的第1天,在3分钟闪烁光(12Hz)刺激期间及之后的6分钟内,每20秒评估一次视网膜血流;在第2天,在10分钟全身高氧期间及之后的20分钟内,每分钟测量一次视网膜血流;在第3天,进行视网膜电图(ERG)检查。体重、全身血压和眼灌注压随年龄显著增加,但静息视网膜血流和ERG参数保持不变。视网膜血流随闪烁刺激显著增加,随全身高氧而减少,与年龄无关。LSFG-Micro在成年小鼠中提供了一致且可重复的视网膜血流测量。对闪烁刺激和全身高氧反应的视网膜血流纵向评估可能是视网膜血管功能无创监测的有用指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ec8/7666208/2a26fe14110c/41598_2020_75296_Fig1_HTML.jpg

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