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Journal Article

Citation

Opar DA, Ruddy JD, Williams MD, Maniar N, Hickey JT, Bourne MN, Pizzari T, Timmins RG. Med. Sci. Sports Exerc. 2021; ePub(ePub): ePub.

Copyright

(Copyright © 2021, Lippincott Williams and Wilkins)

DOI

10.1249/MSS.0000000000002782

PMID

unavailable

Abstract

PURPOSE: To determine if eccentric knee flexor strength and biceps femoris long head (BFlh) fascicle length were associated with prospective HSI in professional Australian Football players, and if more frequent assessments of these variables altered the association with injury risk.

METHODS: Across two competitive seasons, 311 Australian Football players (455 player seasons) had their eccentric knee flexor strength during the Nordic hamstring exercise and BFlh architecture assessed at the start and end of preseason and in the middle of the competitive season. Player age and injury history were also collected in preseason. Prospective HSIs were recorded by team medical staff.

RESULTS: Seventy-four player seasons (16%) sustained an index HSI. Shorter BFlh fascicles (<10.42 cm) increased HSI risk when assessed at multiple time points only (RR = 1.9; 95%CI = 1.2 to 3.0). Neither absolute (N) or relative (N.kg-1) eccentric knee flexor strength were associated with HSI risk, regardless of measurement frequency (RR range = 1.0 to 1.1), however between-limb imbalance (>9%) when measured at multiple time points was (RR = 1.8, 95%CI = 1.1 to 3.1). Prior HSI had the strongest univariable association with prospective HSI (RR = 2.9; 95%CI = 1.9 to 4.3). Multivariable logistic regression models identified a combination of prior HSI, BFlh architectural variables and between-limb imbalance in eccentric knee flexor strength as optimal input variables, however, their predictive performance did not improve with increased measurement frequency (Area under the curve = 0.681 to 0.726).

CONCLUSIONS: More frequent measures of eccentric knee flexor strength and BFlh architecture across a season did not improve the ability to identify which players would sustain a HSI.


Language: en

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