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采用 V2 滑行动作时,上山轮滑滑雪与雪地滑雪的运动学差异。

Kinematic differences between uphill roller skiing and on-snow skiing using the V2 skating technique.

机构信息

Department of Education and Sports Science, Faculty of Arts and Education, University of Stavanger, P.O. Box 8600, 4036, Stavanger, Norway.

Department of Physical Performance, Norwegian School of Sport Sciences, Oslo, Norway.

出版信息

Eur J Appl Physiol. 2022 Nov;122(11):2355-2365. doi: 10.1007/s00421-022-05007-0. Epub 2022 Jul 27.

Abstract

PURPOSE

Roller skiing is the primary sport-specific training and testing mode during pre-competition periods for cross-country skiers, biathletes, and Nordic combined athletes. The present study aimed to compare the kinematics between uphill roller skiing and on-snow skiing using the V2 sub-technique.

METHODS

In a cross-over design, nine well-trained male skiers performed short trials (< 40 s) at constant inclination (8.0°), speed (3.0 m‧s), and controlled rolling/gliding friction on asphalt (in the fall), on the treadmill (in the fall and winter), and during on-snow skiing (in the winter). Kinematic data were collected using a validated inertial measurement unit system.

RESULTS

Repeated-measures ANOVAs revealed no differences between treadmill and asphalt roller skiing. Further, including on-snow skiing showed moderate to good reliability (ICC ≥ 0.63, p ≤ 0.001) for ground-contact temporal variables. However, on-snow skiing moderately increased hip range of motion around the longitudinal axis (22.2 ± 7.7° vs. 14.1 ± 4.7°), lateral hip displacement (44.1 ± 7.1 cm vs. 37.2 ± 6.6 cm) and pole push times (422 ± 41 ms vs. 386 ± 31 ms), and on-snow skiing was characterized by altered hip rotational patterns compared to roller skiing.

CONCLUSION

V2 roller ski skating simulates on-snow ski skating to a large extent, but the mechanical properties of the skis and/or surface hardness systematically alter skiers' hip movements and pole push times. This implies a potential for equipment optimization to increase training specificity during pre-competition periods and highlights a need for future studies to examine the kinematic effects of snow hardness on all sub-techniques.

摘要

目的

滚轮滑雪是越野滑雪、冬季两项和北欧两项运动员竞赛前准备期间的主要专项训练和测试模式。本研究旨在比较使用 V2 次技术的上坡滚轮滑雪和雪地滑雪之间的运动学差异。

方法

采用交叉设计,9 名训练有素的男性滑雪者在恒定倾斜度(8.0°)、速度(3.0 m·s)和控制滚动/滑行摩擦的条件下,在沥青(秋季)、跑步机(秋季和冬季)和雪地(冬季)上进行短时间试验(<40 s)。使用经过验证的惯性测量单元系统收集运动学数据。

结果

重复测量方差分析显示,跑步机和沥青滚轮滑雪之间没有差异。此外,包括雪地滑雪在内,地面接触时间变量具有中等至良好的可靠性(ICC≥0.63,p≤0.001)。然而,与滚轮滑雪相比,雪地滑雪使髋关节在纵轴上的运动范围适度增加(22.2±7.7°对 14.1±4.7°)、髋关节侧向位移(44.1±7.1 cm 对 37.2±6.6 cm)和撑杆推蹬时间(422±41 ms 对 386±31 ms),并且雪地滑雪的髋关节旋转模式与滚轮滑雪不同。

结论

V2 滚轮滑雪在很大程度上模拟了雪地滑雪,但滑雪板的机械特性和/或表面硬度会系统地改变滑雪者的髋关节运动和撑杆推蹬时间。这意味着在竞赛前准备期间,可以通过优化设备来提高训练的针对性,并强调未来需要研究雪硬度对所有次技术的运动学影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/455c/9560927/805af13e43cc/421_2022_5007_Fig1_HTML.jpg

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