A critical job task for law enforcement officers that should be influenced by strength is the body drag. This study analyzed relationships between absolute and relative strength measured by a one-repetition maximum hexagonal bar deadlift (1RM HBD), with body drags completed with 74.84 kg and 90.72 kg dummies. Twenty recreationally-trained individuals completed the 1RM HBD in one session, with peak power measured via a linear position transducer. Over two subsequent sessions, participants dragged the 74.84 kg and 90.72 kg dummies with two techniques. The first technique followed Californian standards, where participants wrapped their arms around the dummy and lifted it to standing before timing commenced. In the adapted technique, timing included the initial manipulation of the dummy. Participants dragged the dummy as quickly as possible over a 9.75 m distance. Partial correlations and linear regression (controlling for sex; p < 0.05) analyzed relationships between the HBD and body drags. The standard 74.84 kg body drag correlated with every HBD variable (r = -0.477 to -0.666), and was predicted by the absolute 1RM HBD (r = 0.467). The adapted 74.84 kg drag correlated with all HBD variables (r = -0.535 to - 0.754), and was predicted by peak power and the 1RM HBD (r = 0.758). Both 90.72 kg drags correlated with absolute and relative 1RM HBD (r = -0.517 to -0.670). Strength related to all body drags; peak power may be more important for drags with lighter loads. Strength training should be a focus in law enforcement to enhance drag performance.
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http://dx.doi.org/10.2478/hukin-2019-0064 | DOI Listing |
J Strength Cond Res
December 2024
Department of Physical Education and Sport, Faculty of Sport Sciences, University of Granada, Granada, Spain; and.
J Strength Cond Res
July 2024
Department of Kinesiology, California State University, Fullerton, Fullerton, California.
Moreno, MR, Dawes, JJ, Orr, RM, Dulla, JM, and Lockie, RG. Relationships between strength and power with the 74.84-kg (165-lb) and 90.
View Article and Find Full Text PDFInt J Sports Med
October 2024
Department of Physical Education and Sport, Faculty of Sport Sciences, University of Granada, Granada, Spain.
This study aimed to determine whether the optimal minimal velocity threshold (MVT) provides more precise estimates of one-repetition maximum (1RM) in the hexagonal barbell deadlift (HBD) than the general and individual MVTs. The 1RMs of 27 resistance-trained males were predicted using three types of MVT: (i) averaged across subjects' velocity of the 1RM trial (0.25 m·s), (ii) velocity attained during the 1RM trial, and (iii) MVT that eliminated the differences between the actual and predicted 1RM.
View Article and Find Full Text PDFJ Strength Cond Res
May 2024
Department of Exercise and Sport Sciences, Biomechanics Laboratory, Ithaca College, Ithaca, New York.
Stahl, CA, Regni, G, Tanguay, J, McElfresh, M, Trihy, E, Diggin, D, and King, DL. A biomechanical comparison of the back squat and hexagonal barbell deadlift. J Strength Cond Res 38(5): 815-824, 2024-Coaches often use different exercises to encourage similar strength adaptations and limit monotony.
View Article and Find Full Text PDFBiol Sport
January 2023
Associate Graduate Program in Physical Education UPE/UFPB. João Pessoa-PB, Brazil.
The aim of this study was to analyse the load-velocity and load-power relationships in the free-weight back-squat (BSQ) and hexagonal bar deadlift (HBD) exercises. Twenty-five (n = 25) resistance-trained men (age = 23.7 ± 2.
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