Key result
Long-term basketball training is linked to lower resting carotid stiffness and greater diameter versus sedentary controls.
Why the study?
Does a cycling intervention acutely affect carotid arterial hemodynamics differently in basketball athletes compared to sedentary controls?
Cross-Sectional (n=19)
No
Does a cycling intervention acutely affect carotid arterial hemodynamics differently in basketball athletes compared to sedentary controls?
p-value: p=<0.05
Long-term basketball training is associated with lower carotid arterial stiffness at rest and a blunted stiffness increase after acute exercise, but a higher oscillatory shear index.
Athletes show blunted carotid stiffness rise after cycling versus controls; leaves open whether elevated OSI drives vascular remodeling.
OBJECTIVE: To compare the acute effects of a cycling intervention on carotid arterial hemodynamics between basketball athletes and sedentary controls. METHODS: Ten young long-term trained male basketball athletes (BA) and nine age-matched male sedentary controls (SC) successively underwent four bouts of exercise on a bicycle ergometer at the same workload. Hemodynamic variables at right common carotid artery were determined at rest and immediately following each bout of exercise. An ANCOVA was used to compare differences between the BA and SC groups at rest and immediately following the cycling intervention. The repeated ANOVA was used to assess differences between baseline and each bout of exercise within the BA or SC group. RESULTS: In both groups, carotid hemodynamic variables showed significant differences at rest and immediately after the cycling intervention. At rest, carotid arterial stiffness was significantly decreased and carotid arterial diameter was significantly increased in the BA group as compared to the SC group. Immediately following the cycling intervention, carotid arterial stiffness showed no obvious changes in the BA group but significantly increased in the SC group. It is worth noting that while arterial stiffness was lower in the BA group than in the SC group, the oscillatory shear index (OSI) was significantly higher in the BA group than in the SC group both at rest and immediately following the cycling intervention. CONCLUSION: Long-term basketball exercise had a significant impact on common carotid arterial hemodynamic variables not only at rest but also after a cycling intervention. The role of OSI in the remodeling of arterial structure and function in the BA group at rest and after cycling requires clarification.
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Liu et al. (2015) conducted a cross-sectional in Healthy (Basketball athletes vs Sedentary controls) (n=19). Long-term basketball training vs. Sedentary controls was evaluated on Carotid arterial stiffness and hemodynamics (pressure-strain elastic modulus, beta-stiffness index, diameter, WSS, OSI) (p=<0.05). Long-term basketball athletes exhibited significantly decreased resting carotid arterial stiffness and increased diameter compared to sedentary controls, and maintained stable arterial stiffness following an acute cycling intervention.
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