这是关于长期的游戏,而不是史诗性的炼:解开耐力运动员的HIIT
1Department of Sport Science and Physical Education, University of Agder, Kristiansand, Norway.
概括
高强度间歇训练 (HIIT) 不是最大化问题,而是优化问题. 有效的耐力训练整合了随着时间的推移不同的强度,以获得长期的成功.
科学领域:
- 运动生理学 运动生理学
- 运动科学 运动科学 运动科学
- 分子生物学分子生物学
背景情况:
- 高强度间歇训练 (HIIT) 的处方包括操纵强度,持续时间和恢复.
- 当前的研究经常将HIIT视为"最大化问题",以找到峰值急性生理反应 (VO2,HR,RPE).
- 在将急性HIIT反应与细胞信号传递,蛋白质表达和性能提升之间存在差距.
研究的目的:
- 挑战HIIT处方的"最大化问题"方法.
- 强调将HIIT纳入更广泛的耐力训练框架的重要性.
- 强调训练刺激对耐力能力的长期,个性化的优化.
主要方法:
- 审查有关HIIT,耐力训练原则和分子信号通路的现有文献.
- 分析了成功的耐力运动员如何组织他们的训练.
- 讨论与运动强度相关的分子信号传递中的反抑制机制.
主要成果:
- 成功的耐力训练涉及低强度体积,值训练和HIIT的协同组合.
- 分子信号通路表现出反抑制,使训练历史和当前负载至关重要.
- 长期耐力发展是一个优化问题,平衡各种训练压力随着时间的推移.
结论:
- 应该将HIIT视为一个整合的组成部分,而不是一个孤立的最大化挑战.
- 个性化的训练反应和恢复能力是优化HIIT的关键.
- 可持续的耐力性能增长是所有训练刺激的有效,长期整合的结果.
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