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精英女子冰球运动员在冰上和冰下的力-速度评估中推断出的向前滑冰冲刺的机械决定因素。

Mechanical determinants of forward skating sprint inferred from off- and on-ice force-velocity evaluations in elite female ice hockey players.

机构信息

Laboratory Sport, Expertise and Performance (EA 7370), French Institute of Sport (INSEP), Paris, France.

French Ice Hockey Federation, Cergy, France.

出版信息

Eur J Sport Sci. 2021 Feb;21(2):192-203. doi: 10.1080/17461391.2020.1751304. Epub 2020 Apr 26.

Abstract

This study aimed to investigate the correlations between players' mechanical capacities determined during off- and on-ice tests. Whole body force-velocity relationships were assessed in elite female ice hockey players ( = 17) during jumping [squat jump (SJ)], running (5 and 30 m) and skating (5 and 40 m) sprint tasks. Mechanical capacities estimates include relative maximal theoretical force (F), velocity (V), power (P), slope of the linear relationship between force relative to body mass and velocity (S), maximal horizontal component of the ground reaction force to the corresponding resultant force (RF) and minimal rate of decrease of this ratio (D). On-ice mechanical capacities (F, P, RF and D) to- correlated with 40-m skating split time ( ranging from 0.82 for D to -0.91 for P; < 0.001). Performance variables (SJ height, 30-m running and 40-m forward skating split time) and P demonstrated the largest associations between jumping, running and skating tasks ( ranging from -0.81 for 30-m sprint running time to 0.92 for SJ height; < 0.001). (V, S, D and force-velocity deficit) to (P) correlations ( ranging from 0.58 to 0.72; < 0.05) were obtained between mechanical variables inferred from off- and on-ice force-velocity tests. The capacity to generate high amounts of horizontal power and effective horizontal force during the first steps on the ice is paramount for forward skating sprint performance. Mechanical capacities determined during forward skating sprint could be considered in ice hockey testing to identify fitness and/or technical/training requirements.

摘要

本研究旨在探讨冰上和冰下测试中确定的运动员机械能力之间的相关性。在女子冰球精英运动员(n=17)中,评估了跳跃[深蹲跳(SJ)]、跑步(5 米和 30 米)和滑冰(5 米和 40 米)冲刺任务中的全身力速关系。机械能力估计包括相对最大理论力(F)、速度(V)、功率(P)、力相对于体重和速度的线性关系的斜率(S)、对应合力的最大水平地面反作用力(RF)和该比值的最小下降率(D)。冰上机械能力(F、P、RF 和 D)与 40 米滑冰分段时间呈正相关(D 的范围为 0.82 至 P 的 0.91;<0.001)。表现变量(SJ 高度、30 米跑步和 40 米向前滑冰分段时间)和 P 显示了跳跃、跑步和滑冰任务之间最大的关联(30 米冲刺跑步时间的范围为 -0.81 至 SJ 高度的 0.92;<0.001)。从冰上和冰下力速测试推断出的机械变量之间(V、S、D 和力速缺陷)与 P 的相关性(范围为 0.58 至 0.72;<0.05)。在冰上最初几步产生大量水平功率和有效水平力的能力对于向前滑冰冲刺表现至关重要。在冰球测试中,可以考虑向前滑冰冲刺的机械能力,以确定体能和/或技术/训练要求。

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