Wan Xianglin, Qu Feng, Garrett William E, Liu Hui, Yu Bing
Biomechanics Laboratory, Beijing Sport University, Beijing 100084, China.
Duke Sports Medicine, Department of Orthopaedic Surgery, Duke University Medical Center, Durham, NC 27710, USA.
J Sport Health Sci. 2017 Sep;6(3):275-282. doi: 10.1016/j.jshs.2016.04.009. Epub 2016 Apr 21.
Hamstring muscle strain injury (hamstring injury) due to excessive muscle strain is one of the most common injuries in sports. The relationships among hamstring muscle optimal lengths and hamstring flexibility and strength were unknown, which limited our understanding of risk factors for hamstring injury. This study was aimed at examining the relationships among hamstring muscle optimal length and flexibility and strength.
Hamstring flexibility and isokinetic strength data and three-dimensional kinematic data for hamstring isokinetic tests were collected for 11 male and 10 female recreational athletes. The maximal hamstring muscle forces, optimal lengths, and muscle lengths in standing were determined for each participant.
Hamstring muscle optimal lengths were significantly correlated to hamstring flexibility score and gender, but not to hamstring strength. The greater the flexibility score, the longer the hamstring muscle optimal length. With the same flexibility score, females tend to have shorter hamstring optimal muscle lengths compared to males. Hamstring flexibility score and hamstring strength were not correlated. Hamstring muscle optimal lengths were longer than but not significantly correlated to corresponding hamstring muscle lengths in standing.
Hamstring flexibility may affect hamstring muscle maximum strain in movements. With similar hamstring flexibility, hamstring muscle maximal strain in a given movement may be different between genders. Hamstring muscle lengths in standing should not be used as an approximation of their optimal lengths in calculation of hamstring muscle strain in musculoskeletal system modeling.
由于肌肉过度拉伸导致的腘绳肌拉伤(腘绳肌损伤)是体育运动中最常见的损伤之一。腘绳肌最佳长度与腘绳肌柔韧性和力量之间的关系尚不清楚,这限制了我们对腘绳肌损伤危险因素的理解。本研究旨在探讨腘绳肌最佳长度与柔韧性和力量之间的关系。
收集了11名男性和10名女性休闲运动员的腘绳肌柔韧性和等速肌力数据以及腘绳肌等速测试的三维运动学数据。确定了每位参与者的腘绳肌最大力量、最佳长度和站立时的肌肉长度。
腘绳肌最佳长度与腘绳肌柔韧性评分和性别显著相关,但与腘绳肌力量无关。柔韧性评分越高,腘绳肌最佳长度越长。在柔韧性评分相同的情况下,女性的腘绳肌最佳长度往往比男性短。腘绳肌柔韧性评分与腘绳肌力量无关。腘绳肌最佳长度比站立时相应的腘绳肌长度长,但两者无显著相关性。
腘绳肌柔韧性可能会影响运动中腘绳肌最大应变。在腘绳肌柔韧性相似的情况下,特定运动中腘绳肌的最大应变在不同性别之间可能存在差异。在肌肉骨骼系统建模中计算腘绳肌应变时,不应将站立时的腘绳肌长度作为其最佳长度的近似值。