4.4 Article

Reference values of retinal microcirculation parameters derived from a population random sample

Journal

MICROVASCULAR RESEARCH
Volume 134, Issue -, Pages -

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.mvr.2020.104117

Keywords

Czech post-MONICA study; Scanning laser Doppler flowmetry; Juxtapapillary retinal capillary blood flow; Vessel diameter; Luminal diameter; Wall thickness; Wall-to-lumen ratio; Wall cross-sectional area; Retinal vascular resistance

Funding

  1. Ministry of Health of the Czech Republic [15-27109A]

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This study aimed to establish reference values for major functional and structural parameters of retinal microcirculation in an urban population and found that juxtapapillary retinal capillary blood flow increases with age while vessel and luminal diameters decrease. Results revealed a close relationship between blood pressure and vascular remodeling of retinal arterioles, indicating an interaction between micro- and macro-vasculature.
Retinal microcirculation reflects retinal perfusion abnormalities and retinal arterial structural changes at relatively early stages of various cardiovascular diseases. Our objective has been to establish reference values for major functional and structural parameters of retinal microcirculation in a randomly selected urban population sample. A total of 398 randomly selected individuals from an urban population aged 25 to 65 years, resident in Pilsen, Czech Republic, were screened for major cardiovascular risk factors. Retinal microcirculation was assessed using scanning laser Doppler flowmetry (SLDF), with data evaluable in 343 patients. Of this number, complete data were available for 256 individuals free from manifest cardiovascular disease, diabetes and drug treatment for hypertension and/or dyslipidemia, constituting the reference value population. Juxtapapillary retinal capillary blood flow has increased significantly with age whereas vessel and luminal diameters have decreased. No sex differences in retinal microcirculation parameters have been found. Therefore, reference values for retinal microcirculation parameters have been established by age groups. Unattended automated office systolic BP, after adjusting for age, correlated significantly with wall-to-lumen ratio (WLR) and wall thickness (WT). Moreover, after adjusting for age and mean BP, a positive relationship has been found between carotid femoral pulse wave velocity and WT, WLR and wall cross-sectional area, indicating the interaction between microand macro-vasculature. In conclusion, our study is the first to provide reference values of retinal microcirculation parameters in a random Caucasian population sample. Our results have shown that, at the population level, the first structural changes in retinal microcirculation are those in lumen diameters. Of note, a close relationship between BP and vascular remodeling of retinal arterioles and between aortic stiffness and WLR of retinal arterioles suggests an interaction between microand macro-vasculature.

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