Key result
Highly-trained pre-adolescent soccer players exhibit ~13% greater EDVI without structural adaptations.
Why the study?
This study aimed to evaluate left ventricular structure, function, and mechanics in highly-trained, pre-adolescent soccer players compared with age- and sex-matched controls.
Does highly-trained soccer playing alter left ventricular structure, function, and mechanics in pre-adolescent males compared to recreationally active controls?
Cross-Sectional (n=44)
Yes
Does highly-trained soccer playing alter left ventricular structure, function, and mechanics in pre-adolescent males compared to recreationally active controls?
Absolute Event Rate: 51% vs 45%
p-value: p=0.007
Highly-trained pre-adolescent soccer players demonstrate augmented cardiac mechanics and larger end-diastolic volumes without structural wall thickening, indicating early functional adaptation to athletic training.
Suggests early functional LV adaptation in pre-adolescent athletes; hypothesis-generating and requires longitudinal data before clinical application.
Aims This study aimed to evaluate left ventricular structure, function and mechanics, in highly-trained, pre-adolescent soccer players compared with age- and sex-matched controls. Design The study design was a prospective, cross-sectional comparison of left ventricular structure, function and mechanics. Methods Twenty-two male soccer players from two professional youth soccer academies (age: 12.0 ± 0.3 years) and 22 recreationally active controls (age: 11.7 ± 0.3 years) were recruited. Two-dimensional conventional and speckle tracking echocardiography were used to quantify left ventricular structure, function and peak/temporal values for left ventricular strain and twist, respectively. Results End-diastolic volume index was larger in soccer players (51 ± 8 mm/(m2)1.5 vs. 45 ± 6 mm/(m2)1.5; p = 0.007) and concentricity was lower in soccer players (4.3 ± 0.7 g/(mL)0.667 vs. 4.9 ± 1.0 g/(mL)0.667; p = 0.017), without differences in mean wall thickness between groups (6.0 ± 0.4 mm vs. 6.1 ± 0.5 mm; p = 0.754). Peak circumferential strain at the base (–22.2% ± 2.5% vs. –20.5% ± 2.5%; p = 0.029) and papillary muscle levels (–20.1% ± 1.5% vs. –18.3% ± 2.5%; p = 0.007) were greater in soccer players. Peak left ventricular twist was larger in soccer players (16.92° ± 7.55° vs. 12.34° ± 4.99°; p = 0.035) and longitudinal early diastolic strain rate was greater in soccer players (2.22 ± 0.40 s–1 vs. 2.02 ± 0.46 s–1; p = 0.025). Conclusions Highly-trained soccer players demonstrated augmented cardiac mechanics with greater circumferential strains, twist and faster diastolic lengthening in the absence of differences in wall thickness between soccer players and controls.
No takes yet. Share an insight, caveat, or question.
Beaumont et al. (2019) conducted a cross-sectional in Healthy pre-adolescent males (n=44). High-intensity soccer training vs. Recreationally active controls was evaluated on End-diastolic volume index (p=0.007). Highly-trained pre-adolescent soccer players demonstrated augmented cardiac mechanics, including larger end-diastolic volume index (51 vs 45 mm/(m2)1.5; p=0.007), without structural adaptations.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: