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使用双侧功能和人体测量测试来定义越野滑雪运动员的对称性。

Using Bilateral Functional and Anthropometric Tests to Define Symmetry in Cross-Country Skiers.

作者信息

Björklund Glenn, Alricsson Marie, Svantesson Ulla

机构信息

Swedish Winter Sports Research Centre, Department of Health Sciences, Mid-Sweden University, Östersund, Sweden.

The Swedish Sports Confederation, Stockholm, Sweden.

出版信息

J Hum Kinet. 2017 Dec 28;60:9-18. doi: 10.1515/hukin-2017-0107. eCollection 2017 Dec.

Abstract

The aim of this study was to evaluate the symmetry of anthropometry and muscle function in cross-country skiers and their association to vertical jumping power. Twenty cross-country skiers were recruited (21.7 ± 3.8 yrs, 180.6 ± 7.6 cm, 73.2 ± 7.6 kg). Anthropometric data was obtained using an iDXA scan. VO was determined using the diagonal stride technique on a ski treadmill. Bilateral functional tests for the upper and lower body were the handgrip and standing heel-rise tests. Vertical jump height and power were assessed with a counter movement jump. Percent asymmetry was calculated using a symmetry index and four absolute symmetry index levels. At a group level the upper body was more asymmetrical with regard to lean muscle mass (p = 0.022, d = 0.17) and functional strength (p = 0.019, d = 0.51) than the lower body. At an individual level the expected frequencies for absolute symmetry level indexes showed the largest deviation from zero for the heel-rise test (χ2 = 16.97, p = 0.001), while the leg lean mass deviated the least (χ2 = 0.42, p = 0.517). No relationships were observed between absolute symmetry level indexes of the lower body and counter movement jump performance (p > 0.05). As a group the skiers display a more asymmetrical upper body than lower body regarding muscle mass and strength. Interestingly at the individual level, despite symmetrical lean leg muscle mass the heel-rise test showed the largest asymmetry. This finding indicates a mismatch in muscle function for the lower body.

摘要

本研究的目的是评估越野滑雪运动员人体测量学和肌肉功能的对称性及其与垂直跳跃能力的关联。招募了20名越野滑雪运动员(年龄21.7±3.8岁,身高180.6±7.6厘米,体重73.2±7.6千克)。使用iDXA扫描获取人体测量数据。在滑雪跑步机上采用对角步幅技术测定最大摄氧量(VO)。上肢和下肢的双侧功能测试分别为握力测试和站立提踵测试。通过纵跳评估垂直跳跃高度和功率。使用对称指数和四个绝对对称指数水平计算不对称百分比。在组水平上,上半身在瘦肌肉质量方面(p = 0.022,d = 0.17)和功能力量方面(p = 0.019,d = 0.51)比下半身更不对称。在个体水平上,绝对对称水平指数的预期频率显示,提踵测试与零的偏差最大(χ2 = 16.97,p = 0.001),而腿部瘦肌肉质量的偏差最小(χ2 = 0.42,p = 0.517)。未观察到下半身绝对对称水平指数与纵跳表现之间的关系(p > 0.05)。作为一个群体,滑雪运动员在上半身肌肉质量和力量方面比下半身更不对称。有趣的是,在个体水平上,尽管腿部瘦肌肉质量对称,但提踵测试显示出最大的不对称性。这一发现表明下半身肌肉功能不匹配。

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