Novel Supine Isometric Hamstring Test: A Reliability Study

Background: Hamstring strain injuries are highly prevalent, particularly when the hamstrings are in a lengthened position; however, monitoring strength deficits and fatigue throughout a season is currently difficult due to a lack of practical, reliable tests that do not cause undue fatigue. Objectiv...

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Published inInternational journal of kinesiology and sports science Vol. 12; no. 4; pp. 1 - 7
Main Authors Gorman, Barry T., Kung, Stacey, Welch, Neil, Squillante, Antonio
Format Journal Article
LanguageEnglish
Published Footscray Australian International Academic Centre PTY. Ltd (AIAC) 2024
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Abstract Background: Hamstring strain injuries are highly prevalent, particularly when the hamstrings are in a lengthened position; however, monitoring strength deficits and fatigue throughout a season is currently difficult due to a lack of practical, reliable tests that do not cause undue fatigue. Objective: The aim of the current study was to investigate the intersession reliability of a novel 90°hip: 40°knee isometric hamstring test (IHT) in the supine position. Methodology: This was a prospective, observational cohort study conducted on nine male participants (24 ± 3 years, 81.9 ± 6.4kg, 181.8 ± 5.3cm). Each participant completed two testing sessions of the 90°hip: 40°knee IHT using force platforms. Relative and absolute reliability of isometric peak force (IPF) were assessed using intraclass correlation coefficient (ICC) and coefficient of variation (CV%), respectively. Results: Relative reliability of the 90°hip: 40°knee IHT was considered “good” in the dominant limb (ICC = 0.92, Lower bound 95% Confidence Interval (CI) = 0.72) and “poor” in the non-dominant limb (ICC = 0.76, Lower bound 95% CI = 0.28). Absolute reliability was “acceptable” in both legs with 5.81% in the dominant limb and 9.65% in the non-dominant limb. Conclusion: The 90°hip: 40°knee IHT demonstrated moderate reliability overall, further research is required to discover the optimum IHT configuration which can be reliably executed at longer hamstring muscle lengths. This study provides foundational information for practitioners on a novel method of reliably testing hamstring isometric strength at longer muscle lengths.
AbstractList Background: Hamstring strain injuries are highly prevalent, particularly when the hamstrings are in a lengthened position; however, monitoring strength deficits and fatigue throughout a season is currently difficult due to a lack of practical, reliable tests that do not cause undue fatigue. Objective: The aim of the current study was to investigate the intersession reliability of a novel 90°hip: 40°knee isometric hamstring test (IHT) in the supine position. Methodology: This was a prospective, observational cohort study conducted on nine male participants (24 ± 3 years, 81.9 ± 6.4kg, 181.8 ± 5.3cm). Each participant completed two testing sessions of the 90°hip: 40°knee IHT using force platforms. Relative and absolute reliability of isometric peak force (IPF) were assessed using intraclass correlation coefficient (ICC) and coefficient of variation (CV%), respectively. Results: Relative reliability of the 90°hip: 40°knee IHT was considered “good” in the dominant limb (ICC = 0.92, Lower bound 95% Confidence Interval (CI) = 0.72) and “poor” in the non-dominant limb (ICC = 0.76, Lower bound 95% CI = 0.28). Absolute reliability was “acceptable” in both legs with 5.81% in the dominant limb and 9.65% in the non-dominant limb. Conclusion: The 90°hip: 40°knee IHT demonstrated moderate reliability overall, further research is required to discover the optimum IHT configuration which can be reliably executed at longer hamstring muscle lengths. This study provides foundational information for practitioners on a novel method of reliably testing hamstring isometric strength at longer muscle lengths.
Author Kung, Stacey
Squillante, Antonio
Gorman, Barry T.
Welch, Neil
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Copyright 2024. This work is published under https://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
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Snippet Background: Hamstring strain injuries are highly prevalent, particularly when the hamstrings are in a lengthened position; however, monitoring strength...
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SubjectTerms Coefficient of variation
Correlation coefficient
Correlation coefficients
Fatigue
Fatigue tests
Force plates
Health risks
Hip
Knee
Lower bounds
Muscle contraction
Muscle strength
Muscles
Muscular fatigue
Observational studies
Reliability analysis
Soccer
Sports injuries
Supine position
Title Novel Supine Isometric Hamstring Test: A Reliability Study
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Volume 12
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