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个性化在高海拔运动方案中对血液学和代谢益处的重要性:一项多维度单病例研究。

The importance of personalization in high altitude protocols for hematologic and metabolic benefits in sports: A multi-dimensional N-of-1 case study.

作者信息

Lili Loukia, Meydan Cem, Rickard Nate, Zhang Bodi

机构信息

Thorne HealthTech, Inc., 152W 57th st, New York, NY 10019, USA.

Department of Physiology and Biophysics, Weill Cornell Medicine, 1300 York Avenue, New York, NY 10021, USA.

出版信息

Heliyon. 2023 Dec 5;10(1):e23159. doi: 10.1016/j.heliyon.2023.e23159. eCollection 2024 Jan 15.

Abstract

The hematologic and metabolic benefits of high altitude exposure have been extensively studied in athletes due to their promising performance enhancing effects. However, despite the increased research and development of various high altitude protocols for achieving peak performance, the reproducibility of the results at the individual level remains sparse. To systematically address this limitation and establish a more effective method to achieve consistent results at the individual level, we conducted a multi-dimensional study of one elite endurance athlete in two Phases. In Phase 1, we applied the standard protocol of LHTH (Live-High-Train-High) using a commercially available, at-home, normobaric, high altitude simulation tent under the SHTL (Sleep-High-Train-Low) model. Then, we developed the athlete's personalized protocol for peak hematologic parameters during their off-season. This protocol determined the exact total high altitude exposure time required to achieve peak hematologic parameters, which in the case of this athlete, amounted to 45 nights with approximately 8hrs per night. In Phase 2, we replicated the Phase 1 protocol during the athlete's in-season and observed the same or even higher hematologic and metabolic benefits compared to Phase 1. During both phases, we collected thousands of multi-dimensional data points to ensure that the athlete's lifestyle and environmental factors remained stable, and to increase the likelihood that physiological changes resulted primarily from the high altitude exposure. The data trends in both Phases validated that, for this athlete, hematologic measures such as red blood cell count, hematocrit, and hemoglobin, as well as electrolyte content, body weight and gut microbiome composition improved to their personal best values after a total of approximately 15 days of high altitude exposure (45 nights with roughly 8hrs per night totaling 360hrs or 15days). These improvements did not occur after the 21 days recommended by the LHTH protocol highlighting the significance of personalization in high altitude protocols that are designed for peak performance parameters. Therefore, to maximize the benefits in hematologic and other metabolic values and thus increase muscle oxygen supply and peak aerobic capacity through high altitude exposure, each athlete may require a unique total duration of high altitude exposure tailored to their individual physiology. This duration must be determined by their specific response in hematologic peaking. Therefore, initially establishing a personalized protocol for an athlete by determining their required total duration of high altitude exposure for peak hematologic values during their off-season and applying this protocol during their in-season phase may lead to more successful and reproducible benefits compared to following a generalized protocol alone.

摘要

由于高海拔暴露对运动员的表现有显著的提升作用,因此对其血液学和代谢方面的益处进行了广泛研究。然而,尽管为了达到最佳表现,人们对各种高海拔训练方案进行了更多的研究和开发,但在个体层面上,这些结果的可重复性仍然很低。为了系统地解决这一局限性,并建立一种更有效的方法以在个体层面上获得一致的结果,我们分两个阶段对一名精英耐力运动员进行了多维研究。在第一阶段,我们采用了LHTH(住高练高)的标准方案,使用市售的家用常压高海拔模拟帐篷,采用SHTL(睡高练低)模式。然后,我们为运动员在休赛期制定了个性化的方案,以达到最佳血液学参数。该方案确定了达到最佳血液学参数所需的精确总高海拔暴露时间,对于这名运动员来说,总计45个晚上,每晚约8小时。在第二阶段,我们在运动员的赛季中重复了第一阶段的方案,观察到与第一阶段相比,血液学和代谢方面的益处相同甚至更高。在两个阶段中,我们收集了数千个多维数据点,以确保运动员的生活方式和环境因素保持稳定,并增加生理变化主要由高海拔暴露引起的可能性。两个阶段的数据趋势均验证了,对于这名运动员来说,在总共约15天的高海拔暴露(45个晚上,每晚约8小时,总计360小时或15天)后,红细胞计数、血细胞比容、血红蛋白等血液学指标以及电解质含量、体重和肠道微生物群组成均提升至个人最佳值。这些改善并未在LHTH方案建议的21天后出现,这凸显了为达到最佳表现参数而设计的高海拔方案中个性化的重要性。因此,为了通过高海拔暴露最大化血液学和其他代谢值方面的益处,从而增加肌肉氧气供应和最大有氧能力,每名运动员可能需要根据其个体生理状况制定独特的总高海拔暴露时长。这个时长必须由他们在血液学达到峰值时的具体反应来确定。因此,与仅遵循通用方案相比,在休赛期通过确定运动员达到最佳血液学值所需的总高海拔暴露时长,并在赛季中应用该方案,为运动员初步制定个性化方案,可能会带来更成功且可重复的益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ae2/10758776/c8c517db7863/gr1.jpg

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