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优秀回转式高山滑雪运动员转弯时地面反作用力的不对称性与肌肉力量的不对称性无关。

Asymmetries in Ground Reaction Forces During Turns by Elite Slalom Alpine Skiers Are Not Related to Asymmetries in Muscular Strength.

作者信息

Ogrin Jan, Šarabon Nejc, Madsen Mads Kjær, Kersting Uwe, Holmberg Hans-Christer, Supej Matej

机构信息

Faculty of Sport, University of Ljubljana, Ljubljana, Slovenia.

Faculty of Health Sciences, University of Primorska, Izola, Slovenia.

出版信息

Front Physiol. 2021 Mar 30;12:577698. doi: 10.3389/fphys.2021.577698. eCollection 2021.

Abstract

The ground reaction forces (GRF) associated with competitive alpine skiing, which are relatively large, might be asymmetric during left and right turns due to asymmetries in the strength of the legs and torso and the present investigation was designed to evaluate this possibility. While skiing a symmetrical, 20-gate slalom course, the asymmetries of 9 elite alpine skiers were calculated on the basis of measurements provided by inertial motion units (IMU), a Global Navigation Satellite System and pressure insoles. In addition, specialized dynamometers were utilized to assess potential asymmetry in the strength of their legs and torso in the laboratory. In total, seven variables related to GRF were assessed on-snow and eight related to strength of the legs and torso in the laboratory. The asymmetries in these parameters between left and right turns on snow were expressed in terms of the symmetry (SI) and Jaccard indices (JI), while the asymmetries between the left and right sides of the body in the case of the laboratory measurements were expressed as the SIs. The three hypotheses to be tested were examined using multivariable regression models. Our findings resulted in rejection of all three hypotheses: The asymmetries in total GRF (H1), as well as in the GRF acting on the inside and outside legs (H2) and on the rear- and forefeet GRF (H3) during left and right turns were not associated with asymmetries in parameters related to muscular strength. Nevertheless, this group of elite slalom skiers exhibited significant asymmetry between their right and left legs with respect to MVC during ankle flexion (0.53 ± 0.06 versus 0.60 ± 0.07 Nm/kg, respectively) and hip extension (2.68 ± 0.39 versus 2.17 ± 0.26 Nm/kg), as well as with respect to the GRFs on the inside leg while skiing (66.8 ± 7.39 versus 76.0 ± 10.0 %BW). As indicated by the JI values, there were also large asymmetries related to GRF as measured by pressure insoles (range: 42.7-56.0%). In conclusion, inter-limb asymmetries in GRFs during elite alpine skiing are not related to corresponding asymmetries in muscular strength. Although our elite athletes exhibited relatively small inter-limb asymmetries in strength, their asymmetries in GRF on-snow were relatively large.

摘要

与竞技高山滑雪相关的地面反作用力(GRF)相对较大,由于腿部和躯干力量的不对称,左右转弯时可能会出现不对称,本研究旨在评估这种可能性。在滑行一条对称的、设有20个旗门的回转赛道时,根据惯性运动单元(IMU)、全球导航卫星系统和压力鞋垫提供的测量数据,计算了9名优秀高山滑雪运动员的不对称性。此外,还利用专门的测力计在实验室评估了他们腿部和躯干力量的潜在不对称性。总共在雪上评估了7个与GRF相关的变量,在实验室评估了8个与腿部和躯干力量相关的变量。雪上左右转弯之间这些参数的不对称性用对称指数(SI)和杰卡德指数(JI)表示,而实验室测量中身体左右两侧之间的不对称性用SI表示。使用多变量回归模型检验了三个待检验的假设。我们的研究结果导致所有三个假设均被否定:左右转弯时总GRF的不对称性(假设1),以及作用在内侧和外侧腿部的GRF的不对称性(假设2)和后脚与前脚GRF的不对称性(假设3)与肌肉力量相关参数的不对称性无关。然而,这组优秀的回转滑雪运动员在踝关节屈曲时(分别为0.53±0.06与0.60±0.07 Nm/kg)和髋关节伸展时(2.68±0.39与2.17±0.26 Nm/kg),以及在滑雪时内侧腿部的GRF方面(66.8±7.39与76.0±10.0 %体重),左右腿之间表现出显著的不对称性。如JI值所示,压力鞋垫测量的与GRF相关的不对称性也很大(范围:42.7 - 56.0%)。总之,优秀高山滑雪运动员在滑行时GRF的肢体间不对称性与肌肉力量的相应不对称性无关。尽管我们的优秀运动员在力量方面表现出相对较小的肢体间不对称性,但他们在雪上GRF的不对称性相对较大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/daee/8042208/a28054fd3f76/fphys-12-577698-g001.jpg

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