Low Correlation Between Bench Press One-Repetition Maximum and Angle Specific Isometric Bench Press
Cameron N. Munger, David C. Archer, RoQue A. Harmon, Kylie K. Harmon, Derek N. Pamukoff, Jared W. Coburn, Lee E. Brown
Abstract
Cameron N. Munger, David C. Archer, RoQue A. Harmon, Kylie K. Harmon, Derek N. Pamukoff, Jared W. Coburn, Lee E. Brown
Abstract
Administration of bench press 1-repetition maximum (1RM) tests can be time consuming, require trained personnel, and are risky for beginners. Therefore, alternative testing procedures for upper body push strength should be considered. PURPOSE: To quantify strength and determine the relationship between dynamic bench press 1RM and angle specific isometric bench press. METHODS: Twelve recreationally trained males (age=24.83±2.89yrs, height=172.33±6.6cm, mass=83.18±8.53kg), capable of bench pressing a minimum of 1.25x their bodyweight, volunteered to participate. On day 1, subjects performed a bench press warm-up and had 5 attempts to reach their 1RM using a self-selected grip that remained the same for the entire study. On day 2, subjects performed an isometric bench press warm-up, then completed 2 max effort repetitions at 4 different angles of elbow flexion (60, 90, 120, and 150 degrees) and at 50% of their arm length in randomized order. RESULTS: Pearson correlations were very low and not-significant (P>0.05) between dynamic bench press 1RM (115.43±12.68kg) and isometric bench press at all angles (60°=56.60±9.72kg, r= -.04; 90°=65.25±9.77kg, r= -.26; 120°=110.39±20.79kg, r= -.11; 150°=121.46±29.83kg, r= -.24; 50% arm length=57.72±8.09kg, r= -.25). CONCLUSIONS: Traditionally, dynamic movements are the focus of strength testing. The 1RM bench press is dynamic while the isometric bench press produces no movement. Thus, muscular length-tension or force-velocity differences between modes may explain the low relationships. Therefore, isometric bench press may not be a proper substitute for a 1RM bench press test.
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Administration of bench press 1-repetition maximum (1RM) tests can be time consuming, require trained personnel, and are risky for beginners. Therefore, alternative testing procedures for upper body push strength should be considered. PURPOSE: To quantify strength and determine the relationship between dynamic bench press 1RM and angle specific isometric bench press. METHODS: Twelve recreationally trained males (age=24.83±2.89yrs, height=172.33±6.6cm, mass=83.18±8.53kg), capable of bench pressing a minimum of 1.25x their bodyweight, volunteered to participate. On day 1, subjects performed a bench press warm-up and had 5 attempts to reach their 1RM using a self-selected grip that remained the same for the entire study. On day 2, subjects performed an isometric bench press warm-up, then completed 2 max effort repetitions at 4 different angles of elbow flexion (60, 90, 120, and 150 degrees) and at 50% of their arm length in randomized order. RESULTS: Pearson correlations were very low and not-significant (P>0.05) between dynamic bench press 1RM (115.43±12.68kg) and isometric bench press at all angles (60°=56.60±9.72kg, r= -.04; 90°=65.25±9.77kg, r= -.26; 120°=110.39±20.79kg, r= -.11; 150°=121.46±29.83kg, r= -.24; 50% arm length=57.72±8.09kg, r= -.25). CONCLUSIONS: Traditionally, dynamic movements are the focus of strength testing. The 1RM bench press is dynamic while the isometric bench press produces no movement. Thus, muscular length-tension or force-velocity differences between modes may explain the low relationships. Therefore, isometric bench press may not be a proper substitute for a 1RM bench press test.
Key concepts: Bench press, Isometric exercise, One-repetition maximum, Mathematics, Elbow, Leg press, Orthodontics, Physical therapy