不同力量能力的高水平精英掰手腕运动员的努力程度对比分析

D. Bezkorovainyi, O. Kamayev, S. Vlasko, L. Plotnytskyi, Yevhen Kravchuk, Denis Kulakov, Oksana Mashchenko, Andrii Kliuka
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摘要

研究目的确定具有不同力量能力的高水平掰手腕运动员在竞技练习中力量表现的特殊性。材料和方法。研究涉及 2017-2020 年世界上最优秀的 4 名掰手腕运动员,体重从 80 公斤到 100 公斤不等(m = 87.50 ± 2.47 公斤)。研究确定了四项力量测试练习,以确保在掰手腕比赛中完成竞技动作:手指弯曲、用锤子拉伸、勾手和弯手。所有测试练习的力量指标都是用 FL1K 0.5N、1000N 电动应变式测力计测量的,该测力计由 Kern & Sohn GmbH(中国)生产,使用作者的挡块装置固定在掰手腕台上。结果对所研究指标之间关系的相关性分析结果证实,不同力量和速度力量能力的运动员,其努力的力量和时间特征之间的关系在方向和强度上存在差异。因此,在 36 个相关指标中,掰手腕运动员 1 和 2 的数据有 11 个模块具有非常高的联系强度(r = 0.926-0.999),其中 7 个模块与时间有关,4 个模块与努力的力量特征有关。3 号和 4 号运动员也有 3 个模块具有很强的联系强度(r = 0.916-0.948),8 个模块具有很强的联系强度(r = 0.739-0.886),其中 7 个模块与力量指标有关,4 个模块与时间特征有关。但其他相关指标的关系程度很弱(r < 0.29)和很弱(r = 0.3-0.5)。结论。通过对实现边界阻力过程中力量表现的时间特征和力量特征的分析,我们可以清楚地确定由基因决定的掰手腕运动员爆发力、快力和慢力的速度和力量能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Analysis of the Efforts of Highly Qualified Elite Armwrestlers with Different Strength Abilities
Study purpose. Determination of the peculiarities of the manifestation of strength in competitive exercises of highly qualified armwrestlers with different strength abilities. Materials and methods. The study involved the 4 best armwrestlers in the world weighing from 80 to 100 kg (m = 87.50 ± 2.47 kg) in 2017–2020. Four power test exercises have been identified that ensure the performance of a competitive action in armwrestling: flexion of the fingers, stretch with a hammer, hook and bending the hand. Strength indicators in all test exercises were measured with an FL1K 0.5N, 1000N electric strain gauge dynamometer, Kern & Sohn GmbH (China), fixed on the armwrestling table using an author’s block device. Results. The results of the correlation analysis of the relationships between the studied indicators confirm the presence of a difference in the direction and strength of the relationships between the strength and time characteristics of the efforts of athletes with different strength and speed-strength abilities. Thus, out of 36 correlation indicators, the data of armwrestlers 1 and 2 have 11 modules with very high connection strength (r = 0.926–0.999), of which 7 modules are with time and 4 modules are with force characteristics of efforts. Athletes 3 and 4 also have 3 modules with very strong connections (r = 0.916–0.948) and 8 modules with strong connections (r = 0.739–0.886), of which 7 modules are with strength indicators and 4 modules are related to time characteristics. But the other correlation indicators have very weak (r < 0.29) and weak (r = 0.3–0.5) levels of relationships. Conclusions. Analysis of the time and force characteristics of the manifestation of force in the process of achieving boundary resistance allows us to clearly establish the genetically determined speed and strength abilities of the explosive, fast and slow force of armwrestlers.
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