Best Russ, Barwick Benjamin, Best Alice, Berger Nicolas, Harrison Claire, Wright Matthew, Sparrow Julie
Centre for Sport Science & Human Performance, Waikato Institute of Technology, Hamilton 3288, New Zealand.
School of Health and Social Care, Teesside University, Middlesbrough TS3 1BX, UK.
Sports (Basel). 2018 Oct 4;6(4):111. doi: 10.3390/sports6040111.
Ultra-endurance running provides numerous physiological, psychological, and nutritional challenges to the athlete and supporting practitioners. We describe the changes in physiological status, psychological condition, and nutritional intake over the course of two 100-mile running races, with differing outcomes: non-completion and completion. Athlete perception of pain, freshness, and motivation differed between events, independent of rating of perceived exertion. Our data suggest that the integration of multiple sensations (freshness, motivation, hunger, pain, and thirst) produce performance. Increases in carbohydrate feeding (+5 g·h) and protein intake (+0.3 g·kg) also likely contributed to successful completion of a 100-mile race, by reducing the fractional utilization of maximal oxygen uptake and satiating hunger, respectively. Nutritional data support the notion that the gut is a trainable, and critical organ with respect to ultra-endurance performance. Finally, we propose future research to investigate the rate at which peak feeding occurs throughout ultra-endurance events, as this may further serve to personalize sports nutrition strategies.
超级耐力跑给运动员及其辅助人员带来了众多生理、心理和营养方面的挑战。我们描述了在两场100英里跑步比赛过程中生理状态、心理状况和营养摄入的变化,两场比赛结果不同:一场未完成,一场完成。不同赛事中,运动员对疼痛、精神饱满度和动力的感知有所不同,与自感用力度评分无关。我们的数据表明,多种感觉(精神饱满度、动力、饥饿、疼痛和口渴)的整合产生了运动表现。碳水化合物摄入量增加(+5克·小时)和蛋白质摄入量增加(+0.3克·千克),分别通过降低最大摄氧量的分数利用率和缓解饥饿感,也可能有助于100英里比赛的成功完成。营养数据支持这样一种观点,即肠道是一个可训练的关键器官,对于超级耐力表现至关重要。最后,我们提出未来的研究方向是调查在整个超级耐力赛事中达到峰值进食的速率,因为这可能进一步有助于个性化运动营养策略。