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The Effects of a Ketogenic Diet on Exercise Metabolism and Physical Performance in Off-Road Cyclists

机译:生酮饮食对越野自行车运动员运动代谢和身体机能的影响

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摘要

The main objective of this research was to determine the effects of a long-term ketogenic diet, rich in polyunsaturated fatty acids, on aerobic performance and exercise metabolism in off-road cyclists. Additionally, the effects of this diet on body mass and body composition were evaluated, as well as those that occurred in the lipid and lipoprotein profiles due to the dietary intervention. The research material included eight male subjects, aged 28.3 ± 3.9 years, with at least five years of training experience that competed in off-road cycling. Each cyclist performed a continuous exercise protocol on a cycloergometer with varied intensity, after a mixed and ketogenic diet in a crossover design. The ketogenic diet stimulated favorable changes in body mass and body composition, as well as in the lipid and lipoprotein profiles. Important findings of the present study include a significant increase in the relative values of maximal oxygen uptake (VO2max) and oxygen uptake at lactate threshold (VO2 LT) after the ketogenic diet, which can be explained by reductions in body mass and fat mass and/or the greater oxygen uptake necessary to obtain the same energy yield as on a mixed diet, due to increased fat oxidation or by enhanced sympathetic activation. The max work load and the work load at lactate threshold were significantly higher after the mixed diet. The values of the respiratory exchange ratio (RER) were significantly lower at rest and during particular stages of the exercise protocol following the ketogenic diet. The heart rate (HR) and oxygen uptake were significantly higher at rest and during the first three stages of exercise after the ketogenic diet, while the reverse was true during the last stage of the exercise protocol conducted with maximal intensity. Creatine kinase (CK) and lactate dehydrogenase (LDH) activity were significantly lower at rest and during particular stages of the 105-min exercise protocol following the low carbohydrate ketogenic diet. The alterations in insulin and cortisol concentrations due to the dietary intervention confirm the concept that the glucostatic mechanism controls the hormonal and metabolic responses to exercise.
机译:这项研究的主要目的是确定长期的生酮饮食(富含多不饱和脂肪酸)对越野自行车运动员有氧运动和运动代谢的影响。另外,评估了这种饮食对体重和身体组成的影响,以及由于饮食干预而在脂质和脂蛋白谱中出现的影响。研究材料包括八名男性受试者,年龄28.3±3.9岁,具有至少五年的越野自行车比赛训练经验。在交叉设计中混合和生酮饮食后,每个骑自行车的人都在不同强度的自行车测力计上进行连续运动。生酮饮食刺激了体重和身体组成以及脂质和脂蛋白分布的有利变化。本研究的重要发现包括生酮饮食后最大摄氧量(VO2max)和乳酸阈值下摄氧量(VO2 LT)的相对值显着增加,这可以通过减少体重和脂肪量和/或者由于脂肪氧化增加或交感神经活化增强而获得与混合饮食相同的能量产量所需的更大的摄氧量。混合饮食后的最大工作量和乳酸阈值下的工作量明显更高。生酮饮食后,在休息和运动方案的特定阶段,呼吸交换比(RER)的值明显较低。生酮饮食后,在休息时和运动的前三个阶段,心率(HR)和摄氧量显着较高,而在运动方案的最后一个阶段,以最大强度进行锻炼时,心率(HR)和氧气摄入明显增加。低碳水化合物生酮饮食后,在休息和105分钟运动方案的特定阶段,肌酸激酶(CK)和乳酸脱氢酶(LDH)活性显着降低。由于饮食干预,胰岛素和皮质醇浓度的变化证实了这种概念,即糖调节机制控制着运动的激素和代谢反应。

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