Mairead Liston, Colm Fuller, Darren Dahly, Deborah Falla, Rod McLoughlin, Caithriona Yeomans, Nicol van Dyk, Eanna Falvey
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引用次数: 0
Abstract
OBJECTIVES: To (1) provide position-specific normative data for isometric cervical muscle strength and endurance in professional, male rugby players and (2) assess the relationship between age, height, weight, and playing position with cervical muscle strength and endurance. DESIGN: Cross-sectional study. METHODS: Professional rugby players completed peak isometric cervical strength testing followed by a test of cervical muscle endurance. Descriptive statistics for continuous variables with strength normalized to body weight were performed. Multiple linear regression was used to estimate associations between strength measurements. RESULTS: In total, 136 players participated including front-row forwards (27%), other forwards (28%), and backs (45%). Front-row forwards had significantly greater peak isometric cervical muscle strength than other position groups, with backs having the lowest strength. Extension produced the highest force for all 3 position groups (429 N ± 104 N), whereas flexion produced the least (275 N ± 65 N). Age was associated with increased isometric cervical muscle strength. There was a statistically significant relationship between peak flexion strength and flexion endurance (P = .003). The average time for the endurance tests were 55.7 (±17.1) seconds and 52.9 (±20.1) seconds for extension and flexion, respectively. Other forwards had lower cervical extension muscle endurance than backs and front-row forwards. CONCLUSIONS: Normative values for peak and endurance isometric strength in professional rugby players illustrate significant differences between playing position. Consider age, body weight, and intraindividual variability when interpreting cervical strength and endurance results. J Orthop Sports Phys Ther 2024;54(3):1-8. Epub 29 January 2024. doi:10.2519/jospt.2024.11830.
期刊介绍:
The Journal of Orthopaedic & Sports Physical Therapy® (JOSPT®) publishes scientifically rigorous, clinically relevant content for physical therapists and others in the health care community to advance musculoskeletal and sports-related practice globally. To this end, JOSPT features the latest evidence-based research and clinical cases in musculoskeletal health, injury, and rehabilitation, including physical therapy, orthopaedics, sports medicine, and biomechanics.
With an impact factor of 3.090, JOSPT is among the highest ranked physical therapy journals in Clarivate Analytics''s Journal Citation Reports, Science Edition (2017). JOSPT stands eighth of 65 journals in the category of rehabilitation, twelfth of 77 journals in orthopedics, and fourteenth of 81 journals in sport sciences. JOSPT''s 5-year impact factor is 4.061.