Fourchet François, Girard Olivier, Kelly Luke, Horobeanu Cosmin, Millet Grégoire P
ASPIRE Health Centre - ASPETAR, National Sports Medicine Programme, Doha, Qatar.
Sport Science Department, ASPETAR - Qatar Orthopaedic and Sports Medicine Hospital, Doha, Qatar.
J Sci Med Sport. 2015 Mar;18(2):199-203. doi: 10.1016/j.jsams.2014.01.007. Epub 2014 Feb 6.
This study aimed to determine adjustments in spring-mass model characteristics, plantar loading and foot mobility induced by an exhaustive run.
Within-participants repeated measures.
Eleven highly-trained adolescent middle-distance runners ran to exhaustion on a treadmill at a constant velocity corresponding to 95% of velocity associated with VO₂max (17.8 ± 1.4 kmh(-1), time to exhaustion=8.8 ± 3.4 min). Contact time obtained from plantar pressure sensors was used to estimate spring-mass model characteristics, which were recorded (during 30 s) 1 min after the start and prior to exhaustion using pressure insoles. Foot mobility magnitude (a composite measure of vertical and medial-lateral mobility of the midfoot) was measured before and after the run.
Mean contact area (foot to ground), contact time, peak vertical ground reaction force, centre of mass vertical displacement and leg compression increased significantly with fatigue, while flight time, leg stiffness and mean pressure decreased. Leg stiffness decreased because leg compression increased to a larger extent than peak vertical ground reaction forces. Step length, step frequency and foot mobility magnitude did not change at exhaustion.
The stride pattern of adolescents when running on a treadmill at high constant velocity deteriorates near exhaustion, as evidenced by impaired leg-spring behaviour (leg stiffness) and altered plantar loading.
本研究旨在确定力竭性跑步所引起的弹簧-质量模型特征、足底负荷及足部活动度的变化。
受试者内重复测量。
11名训练有素的青少年中长跑运动员在跑步机上以相当于最大摄氧量(VO₂max)时速度的95%的恒定速度跑步至力竭(17.8±1.4千米/小时,力竭时间=8.8±3.4分钟)。利用足底压力传感器获得的接触时间来估算弹簧-质量模型特征,在起跑后1分钟及力竭前使用压力鞋垫记录(持续30秒)这些特征。在跑步前后测量足部活动度大小(中足垂直和内外侧活动度的综合指标)。
随着疲劳程度增加,平均接触面积(足部与地面)、接触时间、垂直地面反作用力峰值、质心垂直位移和腿部压缩显著增加,而腾空时间、腿部刚度和平均压力降低。腿部刚度降低是因为腿部压缩的增加幅度大于垂直地面反作用力峰值的增加幅度。在力竭时步长、步频和足部活动度大小没有变化。
青少年在跑步机上以高恒定速度跑步时,接近力竭时步幅模式会变差,腿部弹簧行为(腿部刚度)受损和足底负荷改变可证明这一点。