从多组学到个性化训练:耐力组学和阻力组学的兴起。

IF 4.1 2区 医学 Q1 SPORT SCIENCES
Kayvan Khoramipour, Sergio Maroto-Izquierdo, Simone Lista, Alejandro Santos-Lozano, Katsuhiko Suzuki
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引用次数: 0

摘要

由于运动对心血管、代谢和神经激素系统以及全身生理的其他方面都有积极影响,因此运动对整体健康至关重要。传统的运动生理学技术依赖于侵入性手术,限制了我们对运动引起的分子变化的理解。本文对运动组学中的“耐力组学”和“抵抗组学”这两个新兴领域进行了区分。耐力组学和阻力组学分别关注不同人群对耐力和阻力训练的分子反应,而运动组学则侧重于研究运动员在竞技或模拟情况下的分子变化。这些领域将生物系统与组学技术相结合,为有氧和无氧运动中发生的许多生理反应提供准确的见解。通过识别生物标记物和代谢指纹,这些方法可以创建个性化的训练计划,最大限度地提高健康水平,降低受伤风险,并提高依从性。耐力组学和抵抗组学对运动成绩和公共健康的革命性潜力强调了对所有人口统计学和训练模式进行更多研究的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Multi-omics To Personalized Training: The Rise of Enduromics and Resistomics.

Because of its positive effects on the cardiovascular, metabolic and neurohormonal systems, as well as other aspects of systemic physiology, exercise is crucial to overall health. Traditional exercise physiology techniques that rely on invasive procedures have limited our understanding of the molecular changes induced by exercise. This paper distinguishes the emerging fields of "enduromics" and "resistomics" from sportomics. Enduromics and resistomics concentrate on the molecular responses to endurance and resistance training, respectively, in a variety of populations, whereas sportomics stresses the study of molecular alterations in athletes in competitive or simulated situations. These fields integrate biological systems with omics technology to provide accurate insights into the many physiological responses that occur during aerobic and anaerobic exercise. These methods make it possible to create individualized training plans that maximise health, reduce injury risk and improve adherence by identifying biomarkers and metabolic fingerprints. The revolutionary potential of enduromics and resistomics for athletic performance and public health underscores the need for more research across all demographics and training modalities.

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来源期刊
Sports Medicine - Open
Sports Medicine - Open SPORT SCIENCES-
CiteScore
7.00
自引率
4.30%
发文量
142
审稿时长
13 weeks
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