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A longitudinal study of kinematic stride characteristics in maximal sprint running

机译:纵向运动步幅最大跑时的纵向研究

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Purpose of the present study was to measure the kinematic stride characteristics of track-and-field-sprinters and jumpers in maximal sprint-running during different training periods (TP) of a double-periodisation (DP). 26 participants (7 females, age: 22.7 ± 5.7yrs, body mass: 60.1 ± 6.7kg, body height: 172.1 ± 4.4cm; 19 males, age: 20.9 ± 3.3yrs, body mass: 73.7 ± 6.5kg, body height: 182.3 ± 7.5cm) participated in flying 30-meter-sprints. Kinematic stride parameters (stride-velocity, stride-length, stride-frequency, contact-time, flight-time and stride-rhythm) were measured for every single stride with Optojump (Microgate S.r.L., Italy). The training data were collected via protocol. A variance analysis with repeated measures was calculated for 3 respectively 6 TPs as well as multiple regression functions for the stride-velocity. The longitudinal results showed significant values for the 6 TPs, however cyclic increase of maximal sprint-velocity (on average 0.42 ± 0.08m/s) with a DP that corresponded with the recorded training data. 3 TPs differed significantly in average stride-velocity, stride-length, stride-frequency and contact-time of the maximal sprint, but not in flight-time and stride-rhythm. Our findings suggest that kinematic stride characteristics depend on TP. A systematic training control to increase the sprint-speed must take into account these changes of the kinematic parameter during the training year.
机译:本研究的目的是在双周期(DP)的不同训练周期(TP)中测量田径短跑运动员和跳远运动员在最大冲刺跑中的运动步幅特征。 26名参与者(7名女性,年龄:22.7±5.7岁,体重:60.1±6.7kg,身高:172.1±4.4cm; 19名男性,年龄:20.9±3.3岁,体重:73.7±6.5kg,身高: 182.3±7.5厘米)参加了30米短跑飞行。使用Optojump(Microgate S.r.L.,意大利)对每一个步幅测量运动步幅参数(步幅速度,步幅长度,步幅频率,接触时间,飞行时间和步幅节奏)。通过协议收集训练数据。计算了3个分别6个TP的重复测量的方差分析以及步速的多重回归函数。纵向结果显示了6个TP的显着值,但是DP的最大冲刺速度(平均0.42±0.08m / s)的周期性增加与记录的训练数据相对应。 3个TP在最大冲刺的平均步幅速度,步幅长度,步幅频率和接触时间上有显着差异,但在飞行时间和步幅节奏上没有显着差异。我们的发现表明运动步幅特征取决于TP。为提高冲刺速度而进行的系统训练控制必须考虑到训练年期间运动学参数的这些变化。

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