Vol 15, Issue 4

Relationships Between Hex Bar Deadlift One-Repetition Maximum and Maximal Isometric Pulls

Authors

Brandon A. MillerKent State University
Eliott ArroyoKent State University
Emily C. TagesenKent State University
Adam R. JajtnerKent State University
International Journal of Exercise Science 15(4): 45-57, 2022.
DOI: 10.70252/BPGM4852

Abstract

This study sought to determine relationships between hexagonal barbell (HBB) deadlift one-repetition maximum (1-RM) and force-time characteristics of maximal isometric pulls. Twenty-three healthy adults (13 men [8 trained], 10 women [4 trained]) completed three visits consisting of a familiarization and anthropometrics session, a HBB deadlift 1-RM session, and a performance session with three maximal isometric pulls at three positions: lift-off (FLOOR), knee-passing (KNEE), and mid-thigh (MT). Correlation analyses assessed relationships between 1-RM and force-time characteristics at each position with significance set a priori at α ≤ 0.05. Correlation coefficients between 1-RM and force-time characteristics at all positions presented large to very large relationships to peak force (PF; = 0.695-0.879, ≤ 0.001), large to very large relationships to all time-specific force variables (= 0.506-0.812; ≤ 0.014), moderate to very large relationships between rate of force development (RFD) time-bands (= 0.430-0.752; ≤ 0.041), and large to very large relationships to impulse (= 0.575-0.778; ≤ 0.004). Collectively, more very large effect sizes (= 0.7-0.89) were observed at FLOOR (n = 8) and KNEE (n = 6) than MT (n = 0). PF at FLOOR and KNEE presented as strongest predictors of maximal strength in the 1-RM HBB deadlift. The observed differences between positions may be due to exercise-specific disadvantageous positions commonly observed as isometric sticking points. Coaches should consider incorporating isometric pulls from the lift-off or knee passing positions as it appears to be better related to maximal strength than the isometric mid-thigh pull.

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