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支持团队运动中高强度间歇训练适应性的营养策略。

Nutritional strategies to support adaptation to high-intensity interval training in team sports.

作者信息

Gibala Martin J

机构信息

McMaster University, Hamilton, Ont., Canada.

出版信息

Nestle Nutr Inst Workshop Ser. 2013;75:41-9. doi: 10.1159/000345817. Epub 2013 Apr 16.

Abstract

Team sports are characterized by intermittent high-intensity activity patterns. Typically, play consists of short periods of very intense or all-out efforts interspersed with longer periods of low-intensity activity. Fatigue is a complex, multi-factorial process, but intense intermittent exercise performance can potentially be limited by reduced availability of substrates stored in skeletal muscle and/or metabolic by-products associated with fuel breakdown. High-intensity interval training (HIT) has been shown to induce adaptations in skeletal muscle that enhance the capacity for both oxidative and non-oxidative metabolism. Nutrient availability is a potent modulator of many acute physiological responses to exercise, including various molecular signaling pathways that are believed to regulate cellular adaptation to training. Several nutritional strategies have also been reported to acutely alter metabolism and enhance intermittent high-intensity exercise performance. However, relatively little is known regarding the effect of chronic interventions, and whether supplementation over a period of weeks or months augments HIT-induced physiological remodeling and promotes greater performance adaptations. Theoretically, a nutritional intervention could augment HIT adaptation by improving energy metabolism during exercise, which could facilitate greater total work and an enhanced chronic training stimulus, or promoting some aspect of the adaptive response during recovery, which could lead to enhanced physiological adaptations over time.

摘要

团队运动的特点是具有间歇性高强度活动模式。通常,比赛由短时间的非常激烈或全力冲刺与较长时间的低强度活动穿插组成。疲劳是一个复杂的多因素过程,但高强度间歇运动表现可能会受到骨骼肌中储存的底物可用性降低和/或与燃料分解相关的代谢副产物的潜在限制。高强度间歇训练(HIT)已被证明能诱导骨骼肌产生适应性变化,增强氧化代谢和非氧化代谢能力。营养可用性是许多运动急性生理反应的有力调节因子,包括许多被认为调节细胞对训练适应性的分子信号通路。也有报道称,几种营养策略能急性改变新陈代谢并提高间歇性高强度运动表现。然而,关于长期干预的效果以及数周或数月的补充是否能增强HIT诱导的生理重塑并促进更大的表现适应性,我们所知相对较少。从理论上讲,营养干预可以通过改善运动期间的能量代谢来增强HIT适应性,这可以促进更大的总工作量和增强慢性训练刺激,或者在恢复期间促进适应性反应的某些方面,这可能会随着时间的推移导致增强的生理适应性。

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