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疲劳对跑步力学的影响:60秒反向跳跃后业余跑步者的弹簧-质量行为

Effects of Fatigue on Running Mechanics: Spring-Mass Behavior in Recreational Runners After 60 Seconds of Countermovement Jumps.

作者信息

Fischer Gabriela, Storniolo J L L, Peyré-Tartaruga Leonardo A

机构信息

Exercise Research Laboratory and the Post-Graduate Program in Science (Pulmonology), both at the Federal University of Rio Grande do Sul, Porto Alegre, Brazil.

出版信息

J Appl Biomech. 2015 Dec;31(6):445-51. doi: 10.1123/jab.2014-0235. Epub 2015 Jul 24.

Abstract

The purpose of this study was to investigate the effects of acute fatigue on spring-mass model (SMM) parameters among recreational runners at different speeds. Eleven participants (5 males and 6 females) performed running trials at slower, self-selected, and faster speeds on an indoor track before and after performing a fatigue protocol (60 s of countermovement jumps). Maximal vertical force (Fmax), impact peak force (Fpeak), loading rate (LR), contact time (Tc), aerial time (Ta), step frequency (SF), step length (SL), maximal vertical displacement of the center of mass (ΔZ), vertical stiffness (Kvert), and leg work (Wleg) were measured using a force plate integrated into the track. A significant reduction (-43.1 ± 8.6%; P < .05) in mechanical power during jumps indicated that the subjects became fatigued. The results showed that under fatigue conditions, the runners adjusted their running mechanics at slower (≈2.7 ms-1; ΔZ -12% and SF +3.9%; P < .05), self-selected (≈3.3 ms-1; SF +3%, SL -6.8%, Ta -16%, and Fmax -3.3%; P < .05), and faster (≈3.6 ms-1 SL -6.9%, Ta -14% and Fpeak -9.8%; P < .05) speeds without significantly altering Kvert (P > .05). During constant running, the previous 60 s of maximal vertical jumps induced mechanical adjustments in the spatiotemporal parameters without altering Kvert.

摘要

本研究的目的是调查急性疲劳对不同速度的业余跑步者弹簧质量模型(SMM)参数的影响。11名参与者(5名男性和6名女性)在执行疲劳方案(60秒的反复跳跃)前后,在室内跑道上以较慢、自选和较快的速度进行跑步试验。使用集成在跑道中的测力板测量最大垂直力(Fmax)、冲击峰值力(Fpeak)、加载率(LR)、接触时间(Tc)、腾空时间(Ta)、步频(SF)、步长(SL)、质心最大垂直位移(ΔZ)、垂直刚度(Kvert)和腿部功(Wleg)。跳跃过程中机械功率显著降低(-43.1±8.6%;P<.05),表明受试者出现了疲劳。结果表明,在疲劳条件下,跑步者在较慢速度(约2.7米/秒;ΔZ-12%,SF+3.9%;P<.05)、自选速度(约3.3米/秒;SF+3%,SL-6.8%,Ta-16%,Fmax-3.3%;P<.05)和较快速度(约3.6米/秒;SL-6.9%,Ta-14%,Fpeak-9.8%;P<.05)下调整了跑步力学,而Kvert没有显著变化(P>.05)。在持续跑步过程中,之前60秒的最大垂直跳跃在时空参数上引起了机械调整,而没有改变Kvert。

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