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短跑中的不对称性:对 10 秒以下和 11 秒以下男女短跑运动员的深入了解。

Asymmetry in sprinting: An insight into sub-10 and sub-11 s men and women sprinters.

机构信息

Carnegie School of Sport, Leeds Beckett University, Leeds, UK.

Athletics Sector, School of Physical Education & Sport Science, National & Kapodistrian University of Athens, Athens, Greece.

出版信息

Scand J Med Sci Sports. 2022 Jan;32(1):69-82. doi: 10.1111/sms.14068. Epub 2021 Nov 2.

Abstract

We assessed sprint mechanical asymmetry in world-class competitors and evaluated whether inter-limb sex-based differences in sprinting mechanics exist. The eight finalists in the men's and women's 100 m events at the 2017 IAAF World Championships were studied. Five high-speed cameras (150 Hz) were used to capture two consecutive steps of the whole body between 47.0 m and 55.5 m from the start, while four additional cameras (250 Hz) focussed on the lower extremities. A total of 33 spatio-temporal, touchdown and toe-off joint angles, and horizontal and vertical foot velocity parameters were extracted through three-dimensional analysis. Group mean asymmetry scores were assessed using the symmetry angle (SA) where scores of 0% and 100% represent perfect symmetry and perfect asymmetry, respectively. Although considered generally low (SA <3% for 22 out of 33 parameters), the magnitude of mechanical asymmetry varied widely between sprinters of the same sex. However, there was no mean SA scores difference between men and women for any stride mechanical parameters (all p ≥ 0.064). Asymmetry scores were inconsistent between parameters and phases (touchdown vs toe-off instants), and sprinting mechanics were generally not related to asymmetry magnitudes. In summary, low to moderate asymmetry is a natural phenomenon in elite sprinting. Asymmetry was inconsistent between parameters and competitors during near maximum velocity running, yet mean values for a given parameter generally did not differ between sexes. Sprinters' performances were not related to their SA scores.

摘要

我们评估了世界级短跑运动员的冲刺机械不对称性,并评估了短跑力学是否存在肢体间基于性别的差异。研究了 2017 年国际田联世界锦标赛男子和女子 100 米决赛的八名决赛选手。使用五台高速摄像机(150 Hz)在起跑后 47.0 米至 55.5 米之间连续拍摄整个身体的两个连续步骤,而另外四台摄像机(250 Hz)则聚焦于下肢。通过三维分析提取了总共 33 个时空、触地和脚趾离地关节角度以及水平和垂直足速度参数。使用对称角(SA)评估组平均不对称得分,其中 0%和 100%的分数分别代表完美对称和完美不对称。尽管考虑到通常较低(33 个参数中的 22 个的 SA<3%),但相同性别短跑运动员之间的机械不对称性幅度差异很大。然而,对于任何步幅力学参数,男女之间的平均 SA 得分差异均无统计学意义(所有 p 值均≥0.064)。不对称得分在参数和阶段(触地与脚趾离地瞬间)之间不一致,并且冲刺力学通常与不对称幅度无关。总之,在精英短跑中,低到中度的不对称是一种自然现象。在接近最大速度奔跑时,不对称性在参数和竞争者之间不一致,但给定参数的平均值在性别之间通常没有差异。短跑运动员的表现与其 SA 得分无关。

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