Key result
Regular athletic training in young footballers was associated with significantly lower left ventricular global longitudinal strain compared to untrained controls (-20.68% vs -22.99%, p<0.001).
Why the study?
Does regular athletic training alter left ventricular mechanics as assessed by speckle tracking echocardiography in young athletes compared to untrained controls?
Cross-Sectional (n=53)
Does regular athletic training alter left ventricular mechanics as assessed by speckle tracking echocardiography in young athletes compared to untrained controls?
Absolute Event Rate: -20.68% vs -22.99%
p-value: p=<0.001
Speckle tracking echocardiography can detect distinct patterns of left ventricular mechanics in young athletes that conventional echocardiography fails to distinguish.
May indicate training-related LV adaptation detectable by speckle tracking; leaves open its added value for athlete screening.
INTRODUCTION: The objectives were to assess the left ventricular (LV) structure and function in regularly trained young athletes, using 2 D conventional echocardiographic (echo) methods and speckle tracking echocardiography (STE). An observational cross-sectional study. METHODS: Thirty-three footballers and 20 healthy untrained subjects were included in the study. The systolic and diastolic LV functions were evaluated by 2D conventional echo parameters, Doppler method and STE. RESULTS: ) were significantly higher in young athletes as compared with controls. There was no difference regarding the LV systolic function assessed by conventional echo parameters in the 2 study groups. Regarding the diastolic function, the transmitral inflow velocities ratio was significantly higher in athletes (E/A = 2.10±0.49 versus 1.64±0.26, p< 0.001) but there was no difference in the filling pressure in the 2 groups. The STE demonstrated a different pattern of LV deformation in the different groups. A significant lower LV global longitudinal strain (GLS -20.68±2.05 versus -22.99±2.32 %, p<0.001) and higher radial and circumferential strains have been found in the young athletes as compared with controls. A significant relationship between the GLS values and LVED (r= 0.299, p = 0.03) and LVMi was also reported in athletes. CONCLUSION: While conventional morphological and functional echocardiographic parameters failed to distinguish the adaptations in the athlete's heart, deformation parameters showed a different pattern of LV mechanics in young footballers versus controls.
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Charfeddine et al. (2016) conducted a cross-sectional in Healthy young athletes (n=53). Regular athletic training (football) vs. Healthy untrained subjects was evaluated on Left ventricular global longitudinal strain (GLS) (p=<0.001). Regular athletic training in young footballers was associated with significantly lower left ventricular global longitudinal strain compared to untrained controls (-20.68% vs -22.99%, p<0.001).
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