Skip to main content
Top
Published in: International Ophthalmology 9/2020

01-09-2020 | Glaucoma | Original Paper

Diurnal fluctuations of macular vessel density in patients with primary open-angle glaucoma and healthy subjects

Authors: Xiaojie Wang, Juanjuan Chen, Shaodan Zhang, Xiao Shang, Kun Zhou, Yuan Lan, Jianqiu Cai, Yuanbo Liang

Published in: International Ophthalmology | Issue 9/2020

Login to get access

Abstract

Purpose

To investigate the diurnal fluctuations of macular vessel density (VD) in primary open-angle glaucoma (POAG) and healthy subjects using optical coherence tomography angiography.

Methods

A total of 22 POAG eyes and 15 healthy eyes were included in this study. Macular VD, intraocular pressure, and blood pressure were repeatedly measured from 8 AM to 8 PM at a 2-h interval on a single day. Main outcome measures: the macular VD measurements, their diurnal fluctuations, including the difference between their maximal and minimal value (max–min) and their coefficient of variation (CV) in superficial capillary plexus (SCP) and deep capillary plexus (DCP). The mixed-effects model was performed to compare the fluctuations between groups.

Results

After adjusted age, the diurnal fluctuations of macular VD in SCP and DCP were significantly higher in POAG eyes compared with healthy subjects (max–min: 6.65 ± 3.54%, 3.92 ± 3.63%, respectively; p = 0.037 and CV: 0.06 ± 0.03, 0.04 ± 0.03, respectively; p = 0.003). The fovea VD in DCP of POAG eyes was higher than in healthy subjects (31.52 ± 4.68% and 25.71 ± 3.70%, p = 0.009). However, there was no significant difference between the fovea VD in SCP in two groups (20.97 ± 4.75% and 19.29 ± 4.35%, p = 0.670). The diurnal macular superficial VD measured in most of the participants was lower in the morning.

Conclusions

Whether it is a max–min or a CV assessment method, the POAG eyes had more significant diurnal fluctuations of macular VD than healthy controls, suggesting impaired vascular autoregulation in POAG eyes.
Literature
1.
go back to reference Quigley H (1999) Neuronal death in glaucoma. Prog Retinal Eye Res 18(1):39–57CrossRef Quigley H (1999) Neuronal death in glaucoma. Prog Retinal Eye Res 18(1):39–57CrossRef
2.
go back to reference Yh Kwon J, Kuehn FM et al (2009) Primary open-angle glaucoma. N Engl J Med 360(11):1113–1124CrossRef Yh Kwon J, Kuehn FM et al (2009) Primary open-angle glaucoma. N Engl J Med 360(11):1113–1124CrossRef
4.
go back to reference Memarzadeh F, Ying-Lai M, Chung J et al (2010) Blood pressure, perfusion pressure, and open-angle glaucoma: the Los Angeles Latino Eye Study. Invest Ophthalmol Vis Sci 51(6):2872–2877PubMedPubMedCentralCrossRef Memarzadeh F, Ying-Lai M, Chung J et al (2010) Blood pressure, perfusion pressure, and open-angle glaucoma: the Los Angeles Latino Eye Study. Invest Ophthalmol Vis Sci 51(6):2872–2877PubMedPubMedCentralCrossRef
5.
go back to reference Ramm L, Jentsch S, Peters S et al (2014) Investigation of blood flow regulation and oxygen saturation of the retinal vessels in primary open-angle glaucoma. Graefe’s Arch Clin Exp Ophthalmol (Albrecht von Graefes Archiv fur klinische und experimentelle Ophthalmologie) 252(11):1803–1810CrossRef Ramm L, Jentsch S, Peters S et al (2014) Investigation of blood flow regulation and oxygen saturation of the retinal vessels in primary open-angle glaucoma. Graefe’s Arch Clin Exp Ophthalmol (Albrecht von Graefes Archiv fur klinische und experimentelle Ophthalmologie) 252(11):1803–1810CrossRef
6.
go back to reference Harris A, Sergott RC, Spaeth GL et al (1994) Color Doppler analysis of ocular vessel blood velocity in normal-tension glaucoma. Am J Ophthalmol 118(5):642–649PubMedCrossRef Harris A, Sergott RC, Spaeth GL et al (1994) Color Doppler analysis of ocular vessel blood velocity in normal-tension glaucoma. Am J Ophthalmol 118(5):642–649PubMedCrossRef
7.
go back to reference De Carlo TE, Romano A, Waheed NK et al (2015) A review of optical coherence tomography angiography (OCTA). Int J Retina Vitr 1:5CrossRef De Carlo TE, Romano A, Waheed NK et al (2015) A review of optical coherence tomography angiography (OCTA). Int J Retina Vitr 1:5CrossRef
8.
go back to reference Dong J, Jia YD, Wu Q et al (2017) Interchangeability and reliability of macular perfusion parameter measurements using optical coherence tomography angiography. Br J Ophthalmol 101(11):1542–1549PubMedCrossRef Dong J, Jia YD, Wu Q et al (2017) Interchangeability and reliability of macular perfusion parameter measurements using optical coherence tomography angiography. Br J Ophthalmol 101(11):1542–1549PubMedCrossRef
9.
go back to reference Chen CL, Bojikian KD, Xin C et al (2016) Repeatability and reproducibility of optic nerve head perfusion measurements using optical coherence tomography angiography. J Biomed Opt 21(6):65002PubMedCrossRef Chen CL, Bojikian KD, Xin C et al (2016) Repeatability and reproducibility of optic nerve head perfusion measurements using optical coherence tomography angiography. J Biomed Opt 21(6):65002PubMedCrossRef
10.
go back to reference Jia Y, Wei E, Wang X et al (2014) Optical coherence tomography angiography of optic disc perfusion in glaucoma. Ophthalmology 121(7):1322–1332PubMedCrossRef Jia Y, Wei E, Wang X et al (2014) Optical coherence tomography angiography of optic disc perfusion in glaucoma. Ophthalmology 121(7):1322–1332PubMedCrossRef
11.
go back to reference Venugopal J, Rao H, Weinreb R et al (2018) Repeatability of vessel density measurements of optical coherence tomography angiography in normal and glaucoma eyes. Br J Ophthalmol 102(3):352–357PubMedCrossRef Venugopal J, Rao H, Weinreb R et al (2018) Repeatability of vessel density measurements of optical coherence tomography angiography in normal and glaucoma eyes. Br J Ophthalmol 102(3):352–357PubMedCrossRef
12.
go back to reference Yarmohammadi A, Zangwill LM, Manalastas PIC et al (2018) Peripapillary and macular vessel density in patients with primary open-angle glaucoma and unilateral visual field loss. Ophthalmology 125(4):578–587PubMedCrossRef Yarmohammadi A, Zangwill LM, Manalastas PIC et al (2018) Peripapillary and macular vessel density in patients with primary open-angle glaucoma and unilateral visual field loss. Ophthalmology 125(4):578–587PubMedCrossRef
13.
go back to reference Takusagawa HL, Liu L, Ma KN et al (2017) Projection-resolved optical coherence tomography angiography of macular retinal circulation in glaucoma. Ophthalmology 124(11):1589–1599PubMedCrossRef Takusagawa HL, Liu L, Ma KN et al (2017) Projection-resolved optical coherence tomography angiography of macular retinal circulation in glaucoma. Ophthalmology 124(11):1589–1599PubMedCrossRef
14.
go back to reference Yanik Odabaş Ö, Demirel S, Özmert E et al (2018) Repeatability of automated vessel density and superficial and deep foveal avascular zone area measurements using optical coherence tomography angiography: diurnal findings. Retina (Philadelphia, Pa) 38(6):1238–1245CrossRef Yanik Odabaş Ö, Demirel S, Özmert E et al (2018) Repeatability of automated vessel density and superficial and deep foveal avascular zone area measurements using optical coherence tomography angiography: diurnal findings. Retina (Philadelphia, Pa) 38(6):1238–1245CrossRef
15.
go back to reference Müller VC, Storp JJ, Kerschke L et al (2019) Diurnal variations in flow density measured using optical coherence tomography angiography and the impact of heart rate, mean arterial pressure and intraocular pressure on flow density in primary open-angle glaucoma patients. Acta Ophthalmol 97(6):e844–e849PubMedCrossRef Müller VC, Storp JJ, Kerschke L et al (2019) Diurnal variations in flow density measured using optical coherence tomography angiography and the impact of heart rate, mean arterial pressure and intraocular pressure on flow density in primary open-angle glaucoma patients. Acta Ophthalmol 97(6):e844–e849PubMedCrossRef
16.
go back to reference Baek SU, Kim YK, Ha A et al (2019) Diurnal change of retinal vessel density and mean ocular perfusion pressure in patients with open-angle glaucoma. PloS One 14(4):e0215684PubMedPubMedCentralCrossRef Baek SU, Kim YK, Ha A et al (2019) Diurnal change of retinal vessel density and mean ocular perfusion pressure in patients with open-angle glaucoma. PloS One 14(4):e0215684PubMedPubMedCentralCrossRef
17.
go back to reference Pournaras CJ, Rungger-Brändle E, Riva CE et al (2008) Regulation of retinal blood flow in health and disease. Prog Retinal Eye Res 27(3):284–330CrossRef Pournaras CJ, Rungger-Brändle E, Riva CE et al (2008) Regulation of retinal blood flow in health and disease. Prog Retinal Eye Res 27(3):284–330CrossRef
18.
go back to reference Mansouri K, Rao HL, Hoskens K et al (2018) Diurnal variations of peripapillary and macular vessel density in glaucomatous eyes using optical coherence tomography angiography. J Glaucoma 27(4):336–341PubMedCrossRef Mansouri K, Rao HL, Hoskens K et al (2018) Diurnal variations of peripapillary and macular vessel density in glaucomatous eyes using optical coherence tomography angiography. J Glaucoma 27(4):336–341PubMedCrossRef
19.
go back to reference Caprioli J, Coleman AL (2010) Blood pressure, perfusion pressure, and glaucoma. Am J Ophthalmol 149(5):704–712PubMedCrossRef Caprioli J, Coleman AL (2010) Blood pressure, perfusion pressure, and glaucoma. Am J Ophthalmol 149(5):704–712PubMedCrossRef
20.
go back to reference Luo X, Shen YM, Jiang MN et al (2015) Ocular blood flow autoregulation mechanisms and methods. J Ophthalmol 2015:864871PubMedPubMedCentral Luo X, Shen YM, Jiang MN et al (2015) Ocular blood flow autoregulation mechanisms and methods. J Ophthalmol 2015:864871PubMedPubMedCentral
21.
go back to reference Bringmann A, Syrbe S, Görner K et al (2018) The primate fovea: structure, function and development. Prog Retinal Eye Res 66:49–84CrossRef Bringmann A, Syrbe S, Görner K et al (2018) The primate fovea: structure, function and development. Prog Retinal Eye Res 66:49–84CrossRef
22.
go back to reference Tan CS, Ouyang Y, Ruiz H et al (2012) Diurnal variation of choroidal thickness in normal, healthy subjects measured by spectral domain optical coherence tomography. Invest Ophthalmol Vis Sci 53(1):261–266PubMedCrossRef Tan CS, Ouyang Y, Ruiz H et al (2012) Diurnal variation of choroidal thickness in normal, healthy subjects measured by spectral domain optical coherence tomography. Invest Ophthalmol Vis Sci 53(1):261–266PubMedCrossRef
Metadata
Title
Diurnal fluctuations of macular vessel density in patients with primary open-angle glaucoma and healthy subjects
Authors
Xiaojie Wang
Juanjuan Chen
Shaodan Zhang
Xiao Shang
Kun Zhou
Yuan Lan
Jianqiu Cai
Yuanbo Liang
Publication date
01-09-2020
Publisher
Springer Netherlands
Keyword
Glaucoma
Published in
International Ophthalmology / Issue 9/2020
Print ISSN: 0165-5701
Electronic ISSN: 1573-2630
DOI
https://doi.org/10.1007/s10792-020-01408-2

Other articles of this Issue 9/2020

International Ophthalmology 9/2020 Go to the issue