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肌肉张力和体重可预测业余山地跑者的爬坡比赛用时。

Muscle Tone and Body Weight Predict Uphill Race Time in Amateur Trail Runners.

机构信息

Facultad de Ciencias de la Salud, Universidad San Jorge, Autov. A-23 Zaragoza-Huesca, km 299, 50830 Villanueva de Gállego, Zaragoza, Spain.

出版信息

Int J Environ Res Public Health. 2021 Feb 19;18(4):2040. doi: 10.3390/ijerph18042040.

Abstract

BACKGROUND

Vertical kilometer is an emerging sport where athletes continuously run uphill. The aims of this study were to assess changes in vertical impacts caused by uphill running (UR) and the relation between the anthropometric and lower limb muscular characteristics with speed.

METHODS

Ten male experienced runners (35 ± 7 years old) participated in this study. In the racetrack (4.2 km long, 565 m high), seven sections were stablished. Mean speed and impact value of sections with similar slope (≈21%) were calculated. The gastrocnemius stiffness (GS) and tone (GT); and the vastus lateralis stiffness (VS) and tone (VT) were assessed before the race.

RESULTS

Pearson's correlation showed a linear relationship between vs. and VT ( = 0.829; = 0.000), GT and GS ( = 0.792; = 0.001). Mean speed is correlated with weight ( = -0.619; = 0.024) and GT ( = 0.739; = 0.004). Multiple linear regressions showed a model with weight and GT as dependent variables of mean speed. Mean impacts decreased significantly between sections along the race.

CONCLUSIONS

The vertical impacts during UR were attenuated during the race. Moreover, body weight and GT were associated with the time-to-finish, which supports that low weight alone could not be enough to be faster, and strength training of plantar flexors may be a determinant in UR.

摘要

背景

垂直马拉松是一项新兴的运动,运动员需要不断地向上跑。本研究的目的是评估上坡跑步(UR)引起的垂直冲击的变化,以及人体测量学和下肢肌肉特征与速度之间的关系。

方法

本研究纳入了 10 名有经验的男性跑步者(35 ± 7 岁)。在赛道(4.2 公里长,565 米高)上,设立了 7 个赛段。计算了具有相似坡度(≈21%)的赛段的平均速度和冲击值。在比赛前评估了腓肠肌硬度(GS)和张力(GT);以及股外侧肌硬度(VS)和张力(VT)。

结果

Pearson 相关分析显示,VS 与 VT 之间存在线性关系( = 0.829; = 0.000),GT 与 GS 之间也存在线性关系( = 0.792; = 0.001)。平均速度与体重( = -0.619; = 0.024)和 GT( = 0.739; = 0.004)呈正相关。多元线性回归显示,体重和 GT 作为平均速度的因变量的模型。随着比赛的进行,平均冲击力在各赛段显著降低。

结论

UR 过程中的垂直冲击在比赛过程中减弱。此外,体重和 GT 与完赛时间有关,这表明单独的低体重并不能使运动员跑得更快,而跖屈肌的力量训练可能是 UR 的一个决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f40/7922024/adcebdc49707/ijerph-18-02040-g001.jpg

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