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Journal of Sports Medicine & Doping Studies

ISSN: 2161-0673

Open Access

Left Ventricular Function Improve after Bench Press: A Speckle Tracking and 3D Echocardiography Study

Abstract

Manuel Ruiz Bailen, Jesus Cobo Molinos, Jose Carlos Espada-Fuentes, Ana Maria Castillo-Rivera, Antonio Martinez-Amat, Maria JoseMartinez- Ramirez, Maria Dolores Pola-Gallego-de-Guzman, Sigfredo Sanchez Ramos and Jose Angel Ramos- Cuadra

Background: The speckle tracking echocardiography is a powerful tool that is expanding knowledge on cardiovascular physiology. At present fitness is an increasing sport, and the bench press is a typical exercise. The aim of this study was to investigate by speckle tracking echocardiography the systolic and diastolic properties of the left ventricle during bench press.

Methods: Interventional study. We perform an echocardiogram before, during and immediately after a bench press. During the bench press we assessed the changes suffered in systolic and diastolic functions. Speckle tracking parameter and 3D volume were calculated for left ventricle.

Results: In the study were included 59 male athletes with mean age 34.28 ± 9.54 years. Left ventricle ejection fraction is increased by 2D and 3D echocardiography (0.58 ± 0.07 versus 0.62 ± 0.07, p=0.017). The strain, strain rate, and systolic and diastolic velocities of longitudinal left ventricular fibers (by Speckle Tracking) are higher during exercise [(Strain -21.1 ± 4.09 versus -27.28 ± 3.73, p<0.01) (Strain Rate -1.48 ± 0,30 versus -2.30 ± 0.57; p<0.0001]. The E/E' ratio was unchanged but improved diastolic function improve by Speckle Tracking echocardiography. After the exercise there was more left intraventricular synchrony. Strength training degree could be associated with compliance and synchrony of left ventricle.

Conclusion: During bench press a discrete increase in ejection fraction and large variations in myocardial deformation occurs. Diastolic function is unchanged by 2D echocardiography. Strength training degree could be associated with compliance and synchrony of left ventricle.

 

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