Explosive Push-ups: From Popular Simple Exercises to Valid Tests for Upper-Body Power

被引:14
作者
Zalleg, Dalenda [1 ]
Ben Dhahbi, Anis [2 ,3 ]
Dhahbi, Wissem [4 ,5 ,6 ]
Sellami, Maha [7 ]
Padulo, Johnny [7 ,8 ]
Souaifi, Marouen [5 ]
Beslija, Tea [7 ]
Chamari, Karim [9 ]
机构
[1] Univ Jendouba, High Inst Sports & Phys Educ Kef, Res Unit, Sport Performance & Phys Rehabil, Kef, Tunisia
[2] Univ Tunis El Manar, Fac Sci, Dept Phys, Tunis, Tunisia
[3] Qassim Univ, Coll Sci & Arts ArRass, Phys Dept, Arrass, Saudi Arabia
[4] Natl Ctr Med & Sci Sports CNMSS, Tunisian Res Lab Sport Performance Optimisat, Tunis, Tunisia
[5] Qatar Police Coll, Training Dept, Doha, Qatar
[6] Tunisian Natl Guard Commandos Sch, Oued Zarga, Tunisia
[7] Univ Split, Fac Kinesiol, Split, Croatia
[8] Univ eCampus, Novedrate, Italy
[9] Qatar Orthopaed & Sports Med Hosp, ASPETAR, Athlete Hlth & Performance Res Ctr, Doha, Qatar
关键词
assessment; force platform; muscle strength; stretch-shortening cycle; weight-bearing exercise; MUSCLE-ACTIVITY; FORCE; SHOULDER; STRENGTH; RELIABILITY; ACTIVATION; VELOCITY; KINETICS;
D O I
10.1519/JSC.0000000000002774
中图分类号
G8 [体育];
学科分类号
04 ; 0403 ;
摘要
Zalleg, D, Ben Dhahbi, A, Dhahbi, W, Sellami, M, Padulo, J, Souaifi, M, Beslija, T, and Chamari, K. Explosive push-ups: From popular simple exercises to valid tests for upper-body power.J Strength Cond Res34(10): 2877-2885, 2020-The purpose of this study was to assess the logical and ecological validity of 5 explosive push-up variations as a means of upper-body power assessment, using the factorial characterization of ground reaction force-based (GRF-based) parameter outputs. Thirty-seven highly active commando soldiers (age: 23.3 +/- 1.5 years; body mass: 78.7 +/- 9.7 kg; body height: 179.7 +/- 4.3 cm) performed 3 trials of 5 variations of the explosive push-up in a randomized-counterbalanced order: (a) standard countermovement push-up, (b) standard squat push-up, (c) kneeling countermovement push-up, (d) kneeling squat push-up, and (e) drop-fall push-up. Vertical GRF was measured during these exercises using a portable force plate. The initial force-supported, peak-GRF and rate of force development during takeoff, flight time, impact force, and rate of force development impact on landing were measured. A significant relationship between initial force-supported and peak-GRF takeoff was observed for the countermovement push-up (CMP) exercises (standard countermovement push-up, kneeling countermovement push-up, and drop-fall push-up) and squat push-up (SP) exercises (standard squat push-up and kneeling squat push-up) (r= 0.58 andr= 0.80, respectively;p< 0.01). Furthermore, initial force supported was also negatively correlated to a significant degree with flight time for both CMP and SP (r= -0.74 andr= -0.80;p< 0.01, respectively). Principal component analysis (PCA) showed that the abovementioned 6 GRF-based variables resulted in the extraction of 3 significant components, which explained 88.9% of the total variance for CMP, and 2 significant components, which explained 71.0% of the total variance for SP exercises. In summary, the PCA model demonstrated a great predictive power in accounting for GRF-based parameters of explosive push-up exercises, allowing for stronger logical and ecological validity as tests of upper-body power. Furthermore, it is possible to adjust the intensity level of the push-up exercise by altering the starting position (i.e., standard vs. kneeling).
引用
收藏
页码:2877 / 2885
页数:9
相关论文
共 36 条
[1]  
Alexander RM, 2002, COMP BIOCHEM PHYS A, V133, P1001
[2]   Quantifying force magnitude and loading rate from drop landings that induce osteogenesis [J].
Bauer, JJ ;
Fuchs, RK ;
Smith, GA ;
Snow, CM .
JOURNAL OF APPLIED BIOMECHANICS, 2001, 17 (02) :142-152
[3]   Muscle Activity Levels in Upper-Body Push Exercises With Different Loads and Stability Conditions [J].
Calatayud, Joaquin ;
Borreani, Sebastien ;
Colado, Juan Carlos ;
Martin, Fernando ;
Rogers, Michael E. .
PHYSICIAN AND SPORTSMEDICINE, 2014, 42 (04) :106-119
[4]   Effects of high volume upper extremity plyometric training on throwing velocity and functional strength ratios of the shoulder rotators in collegiate baseball players [J].
Carter, Andrew B. ;
Kaminski, Thomas W. ;
Douex, Al T., Jr. ;
Knight, Christopher A. ;
Richards, James G. .
JOURNAL OF STRENGTH AND CONDITIONING RESEARCH, 2007, 21 (01) :208-215
[5]   VALIDITY AND RELIABILITY OF A NEW TEST OF UPPER BODY POWER [J].
Clemons, James M. ;
Campbell, Brian ;
Jeansonne, Chris .
JOURNAL OF STRENGTH AND CONDITIONING RESEARCH, 2010, 24 (06) :1559-1565
[6]   Comparison of muscle activation using various hand positions during the push-up exercise [J].
Cogley, RM ;
Archambault, TA ;
Fibeger, JF ;
Koverman, MM ;
Youdas, JW ;
Hollman, JH .
JOURNAL OF STRENGTH AND CONDITIONING RESEARCH, 2005, 19 (03) :628-633
[7]  
David K, 2002, MEASUREMENT PHYS ED, P243
[8]   METHODOLOGICAL ISSUES ASSOCIATED WITH THE USE OF FORCE PLATES WHEN ASSESSING PUSH-UPS POWER [J].
Dhahbi, Wissem ;
Chaouachi, Anis ;
Cochrane, Jodie ;
Cheze, Laurence ;
Chamari, Karim .
JOURNAL OF STRENGTH AND CONDITIONING RESEARCH, 2017, 31 (07) :E74-E74
[9]   The Effect of Variation of Plyometric Push-Ups on Force-Application Kinetics and Perception of Intensity [J].
Dhahbi, Wissem ;
Chaouachi, Anis ;
Ben Dhahbi, Anis ;
Cochrane, Jodie ;
Cheze, Laurence ;
Burnett, Angus ;
Chamari, Karim .
INTERNATIONAL JOURNAL OF SPORTS PHYSIOLOGY AND PERFORMANCE, 2017, 12 (02) :190-197
[10]   Five-Meter Rope-Climbing: A Commando-Specific Power Test of the Upper Limbs [J].
Dhahbi, Wissem ;
Chaouachi, Anis ;
Padulo, Johnny ;
Behm, David G. ;
Chamari, Karim .
INTERNATIONAL JOURNAL OF SPORTS PHYSIOLOGY AND PERFORMANCE, 2015, 10 (04) :509-515