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A comparison of the ground reaction force frequency content during rearfoot and non-rearfoot running patterns

机译:后脚和非后脚运行模式下地面反应力频率含量的比较

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Running with a non-rearfoot pattern has been claimed to reduce injury risk because the impact peak in the vertical ground reaction force (GRF) is visually absent in the time-domain compared with a rearfoot pattern. However, running results in a rapid deceleration of the lower extremity segments immediately following initial contact with the ground, regardless of footfall pattern. Therefore, the frequency content of the GRF is expected to contain evidence of this collision. The purpose of the present study was to characterize the waveform components of the GRF generated during the impact phase by habitual rearfoot and habitual non-rearfoot pattern groups using the continuous wavelet transform. Twenty rearfoot and 20 non-rearfoot participants ran over-ground at a standardized speed with their habitual footfall pattern. The continuous wavelet transform was performed on the resultant GRF vector and the vertical GRF. GRF signals generated by the non-rearfoot pattern group during early stance had maximum signal power of 15.4 +/- 9.1 Hz occurring at 23.1 +/- 6.3% of stance, which is within the 10-20 Hz range previously associated with impact in rearfoot runners. Maximum signal power occurred earlier in the impact phase (11.5 +/- 1.5%) and with a higher frequency (27.2 +/- 3.9 Hz) in the rearfoot pattern group verses the non-rearfoot pattern group (P < 0.05). While the impact force transient may not appear as a prominent feature within the time-domain GRF with a non-rearfoot pattern, the results indicate that both footfall patterns generate frequencies associated with the impact peak in the resultant and vertical GRF.
机译:用非后脚图案的跑步已经要求保护伤害风险,因为与后脚图案相比,在时域中的垂直接地反作用力(GRF)中的冲击峰值在视觉上不存在。然而,无论脚踏性图案如何,立即运行立即迅速减速下肢段的快速减速。因此,预计GRF的频率内容将包含这种碰撞的证据。本研究的目的是通过使用连续小波变换来表征在冲击阶段期间产生的GRF的波形组分。二十个后脚和20名非后蹄参与者以标准化的速度运行过地,他们的习惯性的脚踏实地。在得到的GRF载体和垂直GRF上进行连续小波变换。早期姿势期间的非后脚模式组产生的GRF信号具有15.4 +/- 9.1Hz的最大信号功率,其姿势的23.1 +/- 6.3%,其在以前与后脚后的影响有关的10-20Hz范围内跑步者。在冲击阶段(11.5 +/- 1.5%)之前之前发生的最大信号功率(11.5 +/- 1.5%),在后脚模式组中具有更高的频率(27.2 +/- 3.9 Hz),请进行非后脚图案组(P <0.05)。虽然冲击力瞬态可能不会出现在具有非后脚模式的时域GRF内的突出特征的虽然,但结果表明,两只脚踏模式都会产生与所得到的和垂直GRF中的冲击峰相关联的频率。

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