Literature DB >> 33044369

The Deceleration Deficit: A Novel Field-Based Method to Quantify Deceleration During Change of Direction Performance.

Richard Clarke1,2, Paul J Read1,3, Mark B A De Ste Croix1, Jonathan D Hughes1.   

Abstract

ABSTRACT: Clarke, R, Read, PJ, De Ste Croix, MBA, and Hughes, JD. The deceleration deficit: a novel field-based method to quantify deceleration during change of direction performance. J Strength Cond Res 36(9): 2434-2439, 2022-The study investigated the relationship between linear and change of direction (COD) speed performance components and the individual differences between deceleration deficit (DD) and COD deficit (CODD). Thirty-six subjects (mean ± SD : age = 20.3 ± 2.9 years; stature = 175.2 ± 7.7 cm; and body mass = 78.0 ± 16.7 kg) completed 3 trials of a 505 test in both turning directions (dominant [D]; nondominant [ND]) and 3 15-m linear sprints. Deceleration deficit was calculated by the 15-m approach in the 505 test, minus the athlete's linear 15-m sprint time. To compare individuals CODD and DD, z-scores were calculated, and moderate worthwhile changes (MWCs) were identified between these deficit z-scores. Significant correlations were identified between linear sprints and 505 time (D: r = 0.71, 0.74; P < 0.01. ND: r = 0.76, 0.75; P < 0.01) for 10-m and 15-m sprint. respectively, and between 505 performance and CODD (D: r = 0.74; P < 0.01. ND: r = 0.77; P < 0.01) and DD (D: r = 0.41, P < 0.05. ND: r = 0.44, P < 0.01). Deceleration deficit was significantly related to CODD (D: r = 0.59; P < 0.01. ND: r = 0.62; P < 0.01); however, 78% of subjects demonstrated differences between these deficit measures greater than an MWC. In conclusion, linear speed has the strongest significant relationship with 505 performance. Deceleration deficit could provide a more isolated construct than CODD which may be related to an athlete's deceleration capabilities.
Copyright © 2020 National Strength and Conditioning Association.

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Year:  2020        PMID: 33044369     DOI: 10.1519/JSC.0000000000003856

Source DB:  PubMed          Journal:  J Strength Cond Res        ISSN: 1064-8011            Impact factor:   4.415


  2 in total

1.  Validity of Velocity Measurements of a Motorized Resistance Device During Change of Direction.

Authors:  Ola Eriksrud; Fredrik Ahlbeck; Damian Harper; Øyvind Gløersen
Journal:  Front Physiol       Date:  2022-02-24       Impact factor: 4.566

Review 2.  Biomechanical and Neuromuscular Performance Requirements of Horizontal Deceleration: A Review with Implications for Random Intermittent Multi-Directional Sports.

Authors:  Damian J Harper; Alistair J McBurnie; Thomas Dos' Santos; Ola Eriksrud; Martin Evans; Daniel D Cohen; David Rhodes; Christopher Carling; John Kiely
Journal:  Sports Med       Date:  2022-05-29       Impact factor: 11.928

  2 in total

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