Franchi Martino V, Ellenberger Lynn, Javet Marie, Bruhin Björn, Romann Michael, Frey Walter O, Spörri Jörg
Sports Medical Research Group, Department of Orthopaedics, Balgrist University Hospital, University of Zurich, Zurich, Switzerland.
Laboratory for Muscle Plasticity, Department of Orthopaedics, Balgrist University Hospital, University of Zurich, Zurich, Switzerland.
Front Physiol. 2019 Feb 18;10:88. doi: 10.3389/fphys.2019.00088. eCollection 2019.
Competitive alpine skiers are subject to substantial risks of injury, especially concerning the anterior cruciate ligament (ACL). During "landing back weighted" episodes, hamstrings may partially counteract the anterior shear force acting on the tibia by eccentrically resisting the boot-induced drawer of the tibia relative to the femur. The aim of the present study was to provide novel descriptive data and sport-specific reference values on maximal eccentric hamstrings strength (MEHS) in competitive alpine skiers from youth to elite level, and to explore potential relationships with sex, age and biological maturation. 170 competitive alpine skiers were investigated: 139 youth athletes (51 females, 88 males; age: 13.8 ± 0.59 years) and 31 elite athletes (19 females, 12 males; age: 21.7 ± 2.8 years). MEHS was assessed by the (Vald Performance, Newstead, Australia). U15 female skiers presented lower MEHS compared to female elite skiers for both limbs ( = 210 ± 44 N vs. 340 ± 48 N, respectively, < 0.001, and = 207 ± 46 N vs. 303 ± 35 N, respectively, < 0.001). Similarly, lower MEHS was observed in U15 male skiers compared to male elite skiers for both limbs ( = 259 ± 51 N vs. 486 ± 62 N, respectively, < 0.001, and = 258 ± 57 N vs. 427 ± 54 N, respectively, < 0.001). Correlations between MEHS and chronological age were modestly significant only for the U15 group ( = 0.37 and < 0.001). When the correlations for the U15 group were performed between MHES and maturity offset (obtained from the calculation of biological age, i.e., age at peak height velocity), statistical significance was reached by all the correlations run for 3 variables (Males < 0: = 0.59, < 0.0001; Males > 0: = 0.70, < 0.0001; and Females > 0: = 0.46, < 0.0001, start of maturity offset = 0). This cross-sectional description of MEHS in alpine skiers from youth to elite level highlights the importance of biological maturation for MEHS values in youth athletes and presents novel data that may offer insights into new approaches for injury prevention.
竞技高山滑雪运动员面临着巨大的受伤风险,尤其是前交叉韧带(ACL)损伤风险。在“后倾落地”阶段,腘绳肌可能通过离心抵抗靴子引起的胫骨相对于股骨的抽屉样移动,部分抵消作用于胫骨的前剪切力。本研究的目的是提供从青少年到精英水平的竞技高山滑雪运动员最大离心腘绳肌力量(MEHS)的新描述性数据和特定运动的参考值,并探讨其与性别、年龄和生物成熟度之间的潜在关系。对170名竞技高山滑雪运动员进行了调查:139名青少年运动员(51名女性,88名男性;年龄:13.8±0.59岁)和31名精英运动员(19名女性,12名男性;年龄:21.7±2.8岁)。MEHS由(澳大利亚纽斯泰德的瓦尔德性能公司)评估。U15组女性滑雪运动员双下肢的MEHS均低于精英组女性滑雪运动员(分别为210±44N vs. 340±48N,P<0.001,以及分别为20