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A standardized approach to study human variability in isometric thermogenesis during low-intensity physical activity

机译:在低强度体育活动过程中研究等距热生成中人类变异性的标准化方法

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摘要

>Limitations of current methods: The assessment of human variability in various compartments of daily energy expenditure (EE) under standardized conditions is well defined at rest [as basal metabolic rate (BMR) and thermic effect of feeding (TEF)], and currently under validation for assessing the energy cost of low-intensity dynamic work. However, because physical activities of daily life consist of a combination of both dynamic and isometric work, there is also a need to develop standardized tests for assessing human variability in the energy cost of low-intensity isometric work.>Experimental objectives: Development of an approach to study human variability in isometric thermogenesis by incorporating a protocol of intermittent leg press exercise of varying low-intensity isometric loads with measurements of EE by indirect calorimetry.>Results: EE was measured in the seated position with the subject at rest or while intermittently pressing both legs against a press-platform at 5 low-intensity isometric loads (+5, +10, +15, +20, and +25 kg force), each consisting of a succession of 8 cycles of press (30 s) and rest (30 s). EE, integrated over each 8-min period of the intermittent leg press exercise, was found to increase linearly across the 5 isometric loads with a correlation coefficient (r) > 0.9 for each individual. The slope of this EE-Load relationship, which provides the energy cost of this standardized isometric exercise expressed per kg force applied intermittently (30 s in every min), was found to show good repeatability when assessed in subjects who repeated the same experimental protocol on 3 separate days: its low intra-individual coefficient of variation (CV) of ~ 10% contrasted with its much higher inter-individual CV of 35%; the latter being mass-independent but partly explained by height.>Conclusion: This standardized approach to study isometric thermogenesis opens up a new avenue for research in EE phenotyping and metabolic predisposition to obesity.
机译:>当前方法的局限性:在静止状态下[标准代谢率(BMR)和摄食热效应(TEF)]在标准化条件下,对人的日常能量消耗(EE)各个部分的变异性的评估已得到很好的定义。 )],目前正在评估低强度动态工作的能源成本。但是,由于日常生活的身体活动包括动态和等距工作的组合,因此还需要开发标准化的测试,以评估低强度等距工作的能源成本中的人类变异性。>实验目标:< / strong>开发了一种方法,通过将变化的低强度等距负荷的间歇性腿部按压练习方案与通过间接量热法测量的EE相结合,来研究等距热生成中的人类变异性。>结果:在坐着的状态下,受试者处于静止状态,或者在5种低强度等距载荷(+ 5,+ 10,+ 15,+ 20和+25 kg力)下将双腿间歇地压在按压平台上连续8个冲压周期(30 s)和休息周期(30 s)。发现在间歇性腿部压力练习的每个8分钟周期内积分的EE在5个等距负载上线性增加,每个人的相关系数(r)> 0.9。当在重复使用相同实验方案的受试者中进行评估时,发现这种EE-Load关系的斜率提供了这种标准化的等距运动的能量成本,该标准的等距运动以每千克力(间歇性地每分钟30 s)表示。 3个独立的天:个体内部变异系数(CV)低至〜10%,个体间变异系数高得多,为35%; >结论:这种标准化的等距热生成研究方法为研究EE表型和肥胖的代谢易感性开辟了新途径。

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