Chang Chen-Kang, Borer Katarina, Lin Po-Ju
Sport Science Research Center, National Taiwan University of Sport, Taichung, Taiwan.
School of Kinesiology, University of Michigan, Ann Arbor, MI, USA.
J Hum Kinet. 2017 Mar 12;56:81-92. doi: 10.1515/hukin-2017-0025. eCollection 2017 Feb.
Low-carbohydrate-high-fat (LCHF) diets have been used as a means of weight loss and control of symptoms in several clinical conditions. There is emerging evidence that the metabolic changes induced by LCHF diets enhance endurance performance. The aims of this review are to examine the evidence of LCHF diets in improving various aspects of athletic performance. Long-term LCHF dietary intake may help control body weight and fat mass while maintaining lean body mass in athletes in weight-sensitive sports. LCHF-adapted endurance athletes can reach the maximal fat oxidation rate of approximately 1.5 g/min, with a lower carbohydrate oxidation rate and similar muscle glycogen content and a resynthesis rate compared to their counterparts consuming high-carbohydrate-low-fat (HCLF) diets. The elevated fat oxidation rate and glycogen sparing effect may improve performance in ultra-endurance events. These metabolic changes may also prevent the decline in performance in later stages of repeated high-intensity movements, in which the aerobic metabolism becomes more important. However, elevated blood concentrations of non-esterified fatty acids and ammonia during exercise after LCHF diets may lead to early development of central fatigue. It appears that at least several months of adaptation to a LCHF diet are required for the metabolic changes and restoration of muscle glycogen to occur. Further investigations on LCHF diets are needed regarding (1) performance after weight loss in weight-categorized sports; (2) repeated high-intensity exercise performance; (3) development of central fatigue during endurance events; (4) perceptual-motor performance during prolonged intermittent sports; and (5) ideal dietary fatty acid compositions.
低碳水化合物高脂肪(LCHF)饮食已被用作减肥手段,并用于控制多种临床病症的症状。越来越多的证据表明,LCHF饮食引起的代谢变化可提高耐力表现。本综述的目的是研究LCHF饮食在改善运动表现各个方面的证据。长期摄入LCHF饮食可能有助于控制体重和体脂,同时在对体重敏感的运动项目中保持运动员的瘦体重。与食用高碳水化合物低脂肪(HCLF)饮食的运动员相比,适应LCHF饮食的耐力运动员能够达到约1.5克/分钟的最大脂肪氧化率,碳水化合物氧化率较低,肌肉糖原含量及再合成率相似。脂肪氧化率的提高和糖原节省效应可能会改善超耐力项目的表现。这些代谢变化还可能防止在重复高强度运动后期出现表现下降,在这种情况下有氧代谢变得更加重要。然而,LCHF饮食后运动期间血液中非酯化脂肪酸和氨的浓度升高可能会导致中枢疲劳提前出现。似乎至少需要几个月的时间来适应LCHF饮食,才能发生代谢变化并恢复肌肉糖原。关于LCHF饮食,还需要进一步研究:(1)在按体重分级的运动项目中减肥后的表现;(2)重复高强度运动表现;(3)耐力项目中中枢疲劳的发展;(4)长时间间歇性运动中的感知运动表现;(5)理想的膳食脂肪酸组成。