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Retinal vascular diameters in relation to physical activity in Danish children - The CHAMPS Eye Study
K Lundberg1,2, J Tarp3, A H Vestergaard1,2
1Department of Ophthalmology, Odense University Hospital, Odense, Denmark.
Insights
Children with higher physical activity (PA) had thinner retinal venules, suggesting PA positively impacts childhood microcirculation. This may help detect cardiovascular disease risks early.
Area of Science:
- Ophthalmology
- Pediatrics
- Cardiovascular Health
Background:
- Retinal vascular caliber is a potential indicator of systemic vascular health.
- Childhood physical activity (PA) is crucial for overall development and long-term health.
- Understanding the link between PA and retinal microvasculature in children is important for early disease detection.
Purpose of the Study:
- To investigate the association between cumulative physical activity and retinal vascular caliber in a school-based child cohort.
- To determine if physical activity levels during childhood influence retinal arteriolar and venular equivalents (CRAE, CRVE).
Main Methods:
- Prospective cohort study with accelerometry-measured PA at four time points (2009-2015).
- Cross-sectional assessment of biomarkers, anthropometry, and retinal fundus photography in 2015.
- Semi-automated measurement of retinal vascular diameters to calculate CRAE and CRVE.
Main Results:
- Higher time spent in physical activity was independently associated with thinner retinal venules (P < .01).
- Increased sedentary time was linked to wider retinal venules (P < .01).
- Higher birthweight and blood pressure were associated with CRVE and thinner retinal arterioles, respectively.
Conclusions:
- Childhood physical activity is positively associated with healthier retinal venular caliber.
- Retinal vascular analysis may serve as a tool to identify microvascular impairments in children at risk for cardiovascular disease.
Abstract:
Our objective was to determine associations between retinal vascular caliber and physical activity (PA) in a school-based child cohort. In a prospective study, we created a childhood cumulative average PA-index using objectively measured PA (accelerometry) assessed at four periods between 2009 and 2015. Cumulative exposure to PA intensities was estimated. Cross-sectional examinations on biomarkers, anthropometry, and ophthalmological data including retinal fundus photographs were performed in 2015. Semi-automated measurements of retinal vascular diameters were performed and summarized into central retinal arteriolar and venular equivalents (CRAE, CRVE). We included 307 participants. Mean age in 2015 was 15.4 years (0.7). The mean CRAE and CRVE were 156.5 μm (2.8) and 217.6 μm (7.7), respectively. After adjusting for age, gender, and axial length, more time in PA was independently related to thinner retinal venules (β-coefficient = -1.25 μm/%, 95% confidence interval = -2.20, -0.30, P < .01). Sedentary time was associated with wider venules (P < .01). Furthermore, birthweight (β-coefficient = 0.56 μm/%, 95% confidence interval = 0.18, 0.95, P < .01) was associated with CRVE. Blood pressure was associated with thinner retinal arterioles (β-coefficient = -0.19 μm/mmHg, 95% confidence interval = -0.36, -0.01, P = .04). We concluded that children with higher PA in childhood had thinner retinal venular caliber. Our results suggest that PA during childhood positively impacts the retinal microcirculation and that retinal vascular analysis may be a possible assessment to detect microvascular impairments in children with an increased risk of future cardiovascular disease.
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