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首页> 外文期刊>Frontiers in Physiology >Dietary Nitrate Supplementation Improves Exercise Tolerance by Reducing Muscle Fatigue and Perceptual Responses
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Dietary Nitrate Supplementation Improves Exercise Tolerance by Reducing Muscle Fatigue and Perceptual Responses

机译:补充饮食中的硝酸盐可减少肌肉疲劳和知觉反应,从而提高运动耐力

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The present study was designed to provide further insight into the mechanistic basis for the improved exercise tolerance following dietary nitrate supplementation. In a randomized, double-blind, crossover design, twelve recreationally active males completed a dynamic time-to-exhaustion test of the knee extensors after 5 days of consuming both nitrate-rich (NITRATE) and nitrate-depleted beetroot juice (PLACEBO). Participants who improved their time-to-exhaustion following NITRATE performed a time-matched trial corresponding to the PLACEBO exercise duration with another 5 days of dietary nitrate supplementation. This procedure was performed to obtain time-matched exercise trials with (NITRATE _(tm)) and without dietary nitrate supplementation (PLACEBO). Neuromuscular tests were performed before and after each time-matched condition. Muscle fatigue was quantified as percentage change in maximal voluntary torque from pre- to post-exercise (ΔMVT). Changes in voluntary activation (ΔVA) and quadriceps twitch torque (ΔPS100) were used to quantify central and peripheral factors of muscle fatigue, respectively. Muscle oxygen saturation, quadriceps muscle activity as well as perceptual data (i.e., perception of effort and leg muscle pain) were recorded during exercise. Time-to-exhaustion was improved with NITRATE (12:41 ± 07:18 min) compared to PLACEBO (09:03 ± 04:18 min; P = 0.010). NITRATE _(tm) resulted in both lower ΔMVT and ΔPS100 compared to PLACEBO ( P = 0.002; P = 0.001, respectively). ΔVA was not different between conditions ( P = 0.308). NITRATE _(tm) resulted in reduced perception of effort and leg muscle pain. Our findings extend the mechanistic basis for the improved exercise tolerance by showing that dietary nitrate supplementation (i) attenuated the development of muscle fatigue by reducing the exercise-induced impairments in contractile muscle function; and (ii) lowered the perception of both effort and leg muscle pain during exercise.
机译:本研究旨在为补充硝酸盐饮食后改善运动耐量的机制基础提供进一步的见解。在随机,双盲,交叉设计中,十二位具有娱乐活动能力的雄性在食用富含硝酸盐(NITRATE)和硝酸盐耗尽的甜菜根汁(PLACEBO)5天后,完成了膝部伸肌的动态力竭时间测试。参加者在NITRATE后改善了精疲力竭的时间,进行了一项与PLACEBO运动时间相对应的时间匹配试验,并补充了5天的饮食硝酸盐补充。进行此程序可获得具有(NITRATE _(tm))且不添加饮食硝酸盐(PLACEBO)的时间匹配的运动试验。在每个时间匹配的条件之前和之后进行神经肌肉测试。肌肉疲劳量化为运动前至运动后最大自愿扭矩的百分比变化(ΔMVT)。自愿激活(ΔVA)和股四头肌抽搐转矩(ΔPS100)的变化分别用于量化肌肉疲劳的中枢和外周因素。在锻炼期间记录了肌肉的氧饱和度,股四头肌的肌肉活动以及知觉数据(即,对力气的感觉和腿部肌肉的疼痛)。与PLACEBO(09:03±04:18分钟; P = 0.010)相比,使用NITRATE(12:41±07:18分钟)可以改善疲劳时间。与PLACEBO相比,NITRATE _(tm)导致ΔMVT和ΔPS100均较低(分别为P = 0.002; P = 0.001)。 ΔVA在两个条件之间没有差异(P = 0.308)。 NITRATE_(tm)导致对力气和腿部肌肉疼痛的感知减少。我们的发现通过显示饮食中补充硝酸盐(i)通过减少运动引起的收缩性肌肉功能障碍来减轻肌肉疲劳的发展,从而扩展了改善运动耐量的机制基础。 (ii)降低运动过程中对精力和腿部肌肉疼痛的感觉。

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