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低氧训练在马属动物运动员中的新作用

The Emerging Role of Hypoxic Training for the Equine Athlete.

作者信息

Davie Allan, Beavers Rosalind, Hargitaiová Kristýna, Denham Joshua

机构信息

Australian Equine Racing and Research Centre, Ballina, NSW 2478, Australia.

Faculty of Health, Southern Cross University, Lismore, NSW 2480, Australia.

出版信息

Animals (Basel). 2023 Sep 3;13(17):2799. doi: 10.3390/ani13172799.

Abstract

This paper provides a comprehensive discussion on the physiological impacts of hypoxic training, its benefits to endurance performance, and a rationale for utilizing it to improve performance in the equine athlete. All exercise-induced training adaptations are governed by genetics. Exercise prescriptions can be tailored to elicit the desired physiological adaptations. Although the application of hypoxic stimuli on its own is not ideal to promote favorable molecular responses, exercise training under hypoxic conditions provides an optimal environment for maximizing physiological adaptations to enhance endurance performance. The combination of exercise training and hypoxia increases the activity of the hypoxia-inducible factor (HIF) pathway compared to training under normoxic conditions. Hypoxia-inducible factor-1 alpha (HIF-1α) is known as a master regulator of the expression of genes since over 100 genes are responsive to HIF-1α. For instance, HIF-1-inducible genes include those critical to erythropoiesis, angiogenesis, glucose metabolism, mitochondrial biogenesis, and glucose transport, all of which are intergral in physiological adaptations for endurance performance. Further, hypoxic training could conceivably have a role in equine rehabilitation when high-impact training is contraindicated but a quality training stimulus is desired. This is achievable through purpose-built equine motorized treadmills inside commercial hypoxic chambers.

摘要

本文全面讨论了低氧训练对生理的影响、其对耐力表现的益处,以及利用低氧训练提高马匹运动员表现的基本原理。所有运动诱导的训练适应都受遗传因素支配。运动处方可以根据需要进行调整,以引发理想的生理适应。虽然单独应用低氧刺激并不理想,无法促进有利的分子反应,但在低氧条件下进行运动训练为最大限度地实现生理适应以提高耐力表现提供了最佳环境。与常氧条件下的训练相比,运动训练与低氧相结合可增加低氧诱导因子(HIF)途径的活性。低氧诱导因子-1α(HIF-1α)被认为是基因表达的主要调节因子,因为超过100种基因对HIF-1α有反应。例如,HIF-1诱导的基因包括对红细胞生成、血管生成、葡萄糖代谢、线粒体生物合成和葡萄糖转运至关重要的基因,所有这些在耐力表现的生理适应中都不可或缺。此外,当禁忌高强度训练但又需要高质量训练刺激时,低氧训练在马匹康复中可能会发挥作用。这可以通过商业低氧舱内专门设计的马匹电动跑步机来实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b4d/10486977/4af207d0bbd6/animals-13-02799-g001.jpg

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