Retinal and choroidal microcirculation is a relevant biomarker of systemic vascular health and lies at the heart of eye-heart interactions. Noninvasive retinal imaging, particularly OCT angiography (OCT-A), now makes it possible to examine retinal and choroidal microvascularization in vivo and to study its relationship with systemic cardiovascular and neurovascular mechanisms. Ultra-endurance activities, such as ultra-trail races, induce significant systemic hemodynamic changes, including dehydration, variations in perfusion pressure, prolonged sympathetic activation, and redistribution of blood flow. These physiological adaptations could lead to acute and reversible changes in retinal and choroidal vascular parameters as measured by retinophotography and OCT angiography. Several studies suggest that intense physical exercise may be accompanied by significant changes in retinal and choroidal microvascular perfusion. In particular, a significant decrease in the vascular density of the superficial retinal plexus has been observed following intense exercise in a healthy population, suggesting a transient change in retinal microcirculation. Similarly, following a marathon, a decrease in the retinal vascular density index (RVDI) has been reported, likely related to exercise-induced vasoconstriction and a transient reduction in retinal blood flow. This decrease may also be exacerbated by the drop in systemic blood pressure and the relative dehydration observed after the race. More broadly, intense endurance exercise is accompanied by cardiovascular and neurohormonal adaptations, particularly through activation of the renin-angiotensin-aldosterone system, which may modulate ocular perfusion. Scott et al. demonstrated, following a 160-km ultramarathon, significant alterations in left ventricular function and a major elevation in NT-pro-BNP, indicating systemic cardiovascular stress that was markedly greater than that observed after a standard marathon. Furthermore, a multi-omics study conducted during the Ultra-Trail du Mont-Blanc (171 km) revealed systemic oxidative stress, marked inflammation with elevated IL-6 levels, and profound metabolic changes affecting red blood cells-mechanisms recognized as being involved in microvascular dysfunction. However, these variations primarily reflect functional changes in perfusion related to hemodynamic status and autonomic tone, rather than true structural microvascular remodeling or angiogenesis. Metrics derived from OCT angiography, such as vascular density or perfusion density, are in fact sensitive to systemic variations in circulating volume, perfusion pressure, and the quality of the acquired signal. In this context, the effects of ultra-endurance exercise on the eye remain poorly characterized. Research in this area is necessary to better understand the acute physiological adaptations of ocular microcirculation and to highlight the value of retinal imaging as a tool for cardiovascular research and prevention within an integrated eye-heart approach.
Age range
18 Years
Sex
ALL
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Difference in macular vascular density of the superficial capillary plexus between the pre-race and immediate post-race examinations
Timeframe: When measuring vascular biomarkers on Day 1