上海体育大学运动健康学院,上海 200438
国家自然科学基金(32271226,31971097)和国家重点研发计划(2020YFA0803800)资助项目。
School of Exercise and Health, Shanghai University of Sport, Shanghai 200438, China
This work was supported by grants from The National Natural Science Foundation of China (32271226, 31971097 ) and the National Key R&D Program of China (2020YFA0803800).
本文旨在系统评价不同氧体积分数下低氧运动对肥胖人群体成分、葡萄糖代谢及脂代谢的干预效果,并明确最佳氧体积分数(fraction of inspired oxygen,FiO?)区间,为个体化、精准化的低氧运动处方提供科学依据。通过检索Cochrane Library、PubMed、Web of Science、Embase与中国知网(CNKI)等数据库,筛选截至2025年2月31日前发表的关于低氧运动干预肥胖人群的随机对照试验和前后对照研究。采用RevMan 5.4软件进行Meta分析,评估不同氧体积分数(氧体积分数≤14%与氧体积分数>14%)下干预对身体质量指数(BMI)、体脂率、腰围、空腹血糖、胰岛素、胰岛素抵抗指数(HOMA-IR)、甘油三酯(TG)、低密度脂蛋白胆固醇(LDL-C)及高密度脂蛋白胆固醇(HDL-C)的影响,并进行亚组分析。本研究共纳入22项研究,合计样本量为292人。Meta分析结果显示,低氧运动可显著改善肥胖人群的体成分、糖代谢与脂代谢指标,在氧体积分数大于14%的中等低氧环境进行运动干预效果更优。氧体积分数作为低氧运动中的关键参数,其精准设定对优化干预效果至关重要。
This paper aimed to systematically evaluate the effects of hypoxic training at different fraction of inspired oxygen (FiO?) on body composition, glucose metabolism, and lipid metabolism in obese individuals, and to determine the optimal oxygen concentration range to provide scientific evidence for personalized and precise hypoxic exercise prescriptions. A systematic search was conducted in the Cochrane Library, PubMed, Web of Science, Embase, and CNKI databases for randomized controlled trials and pre-post intervention studies published up to February 31, 2025, involving hypoxic training interventions in obese populations. Meta-analysis was performed using RevMan 5.4 software to assess the effects of different fraction of inspired oxygen (FiO2≤14% vs. FiO2>14%) on BMI, body fat percentage, waist circumference, fasting blood glucose, insulin, HOMA-IR, triglycerides (TG), low-density lipoprotein cholesterol (LDL-C), and high-density lipoprotein cholesterol (HDL-C), with subgroup analyses based on oxygen concentration. A total of 22 studies involving 292 participants were included. Meta-analysis showed that hypoxic training significantly reduced BMI (mean difference (MD)=–2.29,95%CI: –3.42 to –1.17, P< 0.000 1), body fat percentage (MD=–2.32,95%CI: –3.16 to –1.47,P<0.001), waist circumference (MD=–3.79 , 95%CI: –6.73 to –0.85, P=0.01), fasting blood glucose (MD=–3.58,95%CI: –6.23 to –0.93, P=0.008), insulin (MD=–1.60, 95%CI: –2.98 to –0.22, P=0.02), TG (MD=–0.18, 95%CI: –0.25 to –0.12, P<0.001), and LDL-C (MD=–0.25, 95%CI: –0.39 to –0.11, P=0.000 3). Greater improvements were observed under moderate hypoxic conditions with FiO2>14%. Changes in HOMA-IR (MD=–0.74, 95%CI: –1.52 to 0.04, P=0.06) and HDL-C (MD=–0.09, 95%CI: –0.21 to 0.02, P=0.11) were not statistically significant. Hypoxic training can significantly improve body composition, glucose metabolism, and lipid metabolism indicators in obese individuals, with greater benefits observed under moderate hypoxia (FiO >14%). As a key parameter in hypoxic exercise interventions, the precise setting of oxygen concentration is crucial for optimizing intervention outcomes.
王婕娉,李小诗,王汝雯,张译尹,于凤至,王茹.不同模式下低氧运动对肥胖人群代谢改善的影响:基于随机对照实验的Meta分析[J].生物化学与生物物理进展,,():
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