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The effects of training with high‐speed interval running on muscle performance are modulated by slope

机译:通过斜坡调制训练在肌肉性能上运行高速间隔的影响

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摘要

We examined changes in selected muscle performance parameters after 8 weeks of interval training using two opposite running inclinations. We hypothesized that the uphill training will affect endurance muscle performance outcomes, whereas the downhill training will affect power muscle performance outcomes. Fourteen physically active volunteers were randomly assigned into either the Uphill group (UG; n = 7; uphill interval running at +10% incline) or the Downhill group (DG; n = 7; downhill interval running at −10% incline) and completed 16 training sessions. Each session consisted of ten 30 s treadmill runs at 90% of maximum aerobic speed (MAS) with a work to rest ratio of 1:2. Vertical jump performance, isometric (MVC) and isokinetic torque of knee extensors and flexors, and fatigue of knee extensors were evaluated pre and post‐training. Moreover, body composition (via bioimpedance) and vastus lateralis muscle architecture (via ultrasonography) were assessed pre and post‐training. Relative lean tissue mass, relative fat mass, and squat jump (cm) significantly (p < .05) changed from baseline values by +4.5 ± 4.0%, −11.5 ± 9.6%, and +9.5 ± 11.7%, respectively, only in the DG. Similarly, DG improved absolute values of knee extension rate of torque development and impulse (p < .05), whereas knee flexion peak torque angle significantly decreased in both groups (p < .05). On the other hand, the UG increased the number of repetitions achieved during the fatigue protocol and total work by 21.2 ± 32.6% and 13.8 ± 21.2%, respectively (p < .05). No differences were found between groups in muscle architecture. Introducing variations in slope during HIIT could be used to induce specific improvements toward muscle endurance or power performance characteristics.
机译:我们在使用两个相对的运行倾斜度后8周的间隔训练后检查了所选肌肉性能参数的变化。我们假设Uphill培训将影响耐力肌肉性能结果,而下坡培训将影响功率肌肉性能结果。将十四个物理活跃的志愿者随机分配到UPHILL组(UG; n = 7;运行+ 10%斜坡上的上坡间隔)或下坡组(DG; n = 7;下坡间隔运行在-10%倾斜)并完成16次培训课程。每个会议由十个30秒的跑步机包括在最大有氧速度(MAS)的90%以上,工作比例为1:2。膝关节伸长叶和屈肌等距跳跃性能,等距(MVC)和等值扭矩,以及膝关节延伸的疲劳进行了培训。此外,通过培训进行评估身体成分(通过生物阻抗)和夸张的侧面肌肉建筑(通过超声检查)。相对瘦组织质量,相对脂肪块和蹲下跳跃(cm)显着(p <.05)从基线值变为+ 4.5±4.0%,-11.5±9.6%,+ 9.5±11.7%,仅在dg。类似地,DG改善了扭矩开发膝关节延伸速率的绝对值(P <.05),而膝关节屈曲峰值扭矩角度在两组中显着降低(P <.05)。另一方面,UG增加了在疲劳方案期间达到的重复次数,并分别总共21.2±32.6%和13.8±21.2%(P <.05)。在肌肉建筑中没有发现差异。在HIIT期间引入坡度的变化可用于诱导肌肉耐力或功率性能特征的具体改进。

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