Department of Sport, Exercise and Health, University of Basel, Basel, Switzerland.
Swiss Federal Institute of Sport, Section for Elite Sport, Magglingen, Switzerland.
Eur J Appl Physiol. 2018 Oct;118(10):2077-2087. doi: 10.1007/s00421-018-3938-4. Epub 2018 Jul 13.
To examine the effects of exercise-induced trunk fatigue on double poling performance, physiological responses and trunk strength in cross-country skiers.
Sixteen well-trained male cross-country skiers completed two identical pre- and post-performance tests, separated by either a 25-min trunk fatiguing exercise sequence or rest period in a randomized, controlled cross-over design. Performance tests consisted of a maximal trunk flexion and extension test, followed by a 3-min double poling (DP) test on a ski ergometer.
Peak torque during isometric trunk flexion (- 66%, p < .001) and extension (- 7.4%, p = .03) decreased in the fatigue relative to the control condition. Mean external power output during DP decreased by 14% (p < .001) and could be attributed both to reduced work per cycle (- 9%, p = .019) and a reduced cycle rate (- 6%, p = .06). Coinciding physiological changes in peak oxygen uptake (- 6%, p < .001) and peak ventilation (- 7%, p < .001) could be observed. Skiers chose a more even-pacing strategy when fatigued, with the performance difference between fatigue and control condition being most prominent during the first 2 min of the post-test.
In well-trained cross-country skiers, exercise-induced trunk fatigue led to a substantial decrease in DP performance, caused by both decreased work per cycle and cycle rate and accompanied by reduced aerobic power. Hence, improved fatigue resistance of the trunk may therefore be of importance for high-intensity DP in cross-country skiing.
研究运动引起的躯干疲劳对越野滑雪运动员双支撑 pole (DP)技术表现、生理反应和躯干力量的影响。
16 名训练有素的男性越野滑雪运动员以随机、对照交叉设计完成了两次完全相同的预测试和后测试,两次测试之间分别间隔 25 分钟的躯干疲劳运动序列或休息期。测试包括最大躯干屈伸测试,随后在滑雪测功计上进行 3 分钟的 DP 测试。
与对照条件相比,疲劳条件下等长躯干屈伸的峰值扭矩(-66%,p<0.001)和伸展(-7.4%,p=0.03)均降低。DP 过程中的平均外部功率输出减少了 14%(p<0.001),这归因于每个循环的工作量减少(-9%,p=0.019)和循环速率降低(-6%,p=0.06)。同时观察到峰值摄氧量(-6%,p<0.001)和峰值通气量(-7%,p<0.001)的相应生理变化。疲劳时,滑雪者选择了更均匀的节奏策略,疲劳和对照条件之间的表现差异在测试后 2 分钟内最为明显。
在训练有素的越野滑雪运动员中,运动引起的躯干疲劳导致 DP 性能显著下降,这是由于每个循环的工作量和循环速率降低以及有氧能力降低所致。因此,提高躯干的疲劳抵抗力可能对越野滑雪的高强度 DP 很重要。