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“Beet-ing” the Mountain: A Review of the Physiological and Performance Effects of Dietary Nitrate Supplementation at Simulated and Terrestrial Altitude

机译:“甜菜”山区:审查模拟和地面高度膳食硝酸盐补充的生理性能和性能影响

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摘要

Abstract Exposure to altitude results in multiple physiological consequences. These include, but are not limited to, a reduced maximal oxygen consumption, drop in arterial oxygen saturation, and increase in muscle metabolic perturbations at a fixed sub-maximal work rate. Exercise capacity during fixed work rate or incremental exercise and time-trial performance are also impaired at altitude relative to sea level. Recently, dietary nitrate (NO 3 ? ) supplementation has attracted considerable interest as a nutritional aid during altitude exposure. In this review, we summarise and critically evaluate the physiological and performance effects of dietary NO 3 ? supplementation during exposure to simulated and terrestrial altitude. Previous investigations at simulated altitude indicate that NO 3 ? supplementation may reduce the oxygen cost of exercise, elevate arterial and tissue oxygen saturation, improve muscle metabolic function, and enhance exercise capacity/performance. Conversely, current evidence suggests that NO 3 ? supplementation does not augment the training response at simulated altitude. Few studies have evaluated the effects of NO 3 ? at terrestrial altitude. Current evidence indicates potential improvements in endothelial function at terrestrial altitude following NO 3 ? supplementation. No effects of NO 3 ? supplementation have been observed on oxygen consumption or arterial oxygen saturation at terrestrial altitude, although further research is warranted. Limitations of the present body of literature are discussed, and directions for future research are provided.
机译:摘要暴露于海拔高度导致多种生理后果。这些包括但不限于降低的最大氧消耗,下降在动脉氧饱和度下降,并以固定的次数工作速率增加肌肉代谢扰动。在固定工作率或增量运动期间的运动能力和时间 - 试验性能也受到海拔海拔的损害。最近,膳食硝酸盐(NO 3?)补充在海拔暴露期间吸引了相当大的利益作为营养援助。在这篇综述中,我们总结了并批判性地评估膳食No 3的生理和性能影响?在暴露于模拟和地面高度期间补充。在模拟高度的先前调查表明3号?补充可以降低运动的氧成本,提高动脉和组织氧饱和度,提高肌肉代谢功能,增强运动能力/性能。相反,目前的证据表明没有3?补充不会增加模拟高度的培训响应。少数研究评估了3号的影响?在地面高度。目前的证据表明陆地高度的内皮功能潜在改进在第3次以下?补充。没有3的影响?虽然有必要进一步研究,但在氧气消耗或动脉氧饱和度上观察到补充。讨论了本体身体的局限性,提供了未来研究的指示。

著录项

  • 来源
    《Sports medicine》 |2017年第11期|共15页
  • 作者单位

    Research Institute for Sport Physical Activity and Leisure Leeds Beckett University;

    Swedish Winter Sports Research Centre Department of Health Sciences Mid Sweden University;

    Swedish Winter Sports Research Centre Department of Health Sciences Mid Sweden University;

    Research Institute for Sport Physical Activity and Leisure Leeds Beckett University;

    Research Institute for Sport Physical Activity and Leisure Leeds Beckett University;

    Research Institute for Sport Physical Activity and Leisure Leeds Beckett University;

    Institute of Cellular Medicine University of Newcastle;

    Research Institute for Sport Physical Activity and Leisure Leeds Beckett University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 运动医学;
  • 关键词

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