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首页> 外文期刊>Physiological Reports >Measuring the short?¢????term substrate utilization response to high?¢????carbohydrate and high?¢????fat meals in the whole?¢????body indirect calorimeter
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Measuring the short?¢????term substrate utilization response to high?¢????carbohydrate and high?¢????fat meals in the whole?¢????body indirect calorimeter

机译:在整个人体间接热量计中测量短期的底物利用率对高碳水化合物和高脂肪食品的响应

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The paper demonstrates that minute?¢????to?¢????minute metabolic response to meals with different macronutrient content can be measured and discerned in the whole?¢????body indirect calorimeter. The ability to discriminate between high?¢????carbohydrate and high?¢????fat meals is achieved by applying a modified regularization technique with additional constraints imposed on oxygen consumption rate. These additional constraints reduce the differences in accuracy between the oxygen and carbon dioxide analyzers. The modified technique was applied to 63 calorimeter sessions that were each 24????h long. The data were collected from 16 healthy volunteers (eight males, eight females, aged 22?¢????35????years). Each volunteer performed four 24?¢????h long calorimeter sessions. At each session, they received one of four treatment combinations involving exercise (high or low intensity) and diet (a high?¢????fat or high?¢????carbohydrate shake for lunch). One volunteer did not complete all four assignments, which brought the total number of sessions to 63 instead of 64. During the 24?¢????h stay in the calorimeter, subjects wore a continuous glucose monitoring system, which was used as a benchmark for subject's postprandial glycemic response. The minute?¢????by?¢????minute respiratory exchange ratio (RER) data showed excellent agreement with concurrent subcutaneous glucose concentrations in postprandial state. The averaged minute?¢????to?¢????minute RER response to the high?¢????carbohydrate shake was significantly different from the response to high?¢????fat shake. Also, postprandial RER slopes were significantly different for two dietary treatments. The results show that whole?¢????body respiration calorimeters can be utilized as tools to study short?¢????term kinetics of substrate oxidation in humans.
机译:该论文表明,在整个人体间接热量计中,可以测量和辨别不同营养素含量不同的餐点的分钟到分钟的新陈代谢反应。通过应用改进的正则化技术并在耗氧率上施加其他限制,可以实现区分高碳水化合物和高脂肪食品的能力。这些额外的限制减少了氧气分析仪和二氧化碳分析仪之间的精度差异。修改后的技术应用于63个量热仪,每个量热仪的时间为24小时。数据收集自16名健康志愿者(八名男性,八名女性,年龄22岁至35岁)。每个志愿者进行了四次24小时的量热法。在每节课中,他们接受了四种治疗组合之一,包括运动(高强度或低强度)和饮食(午餐时高脂肪或高碳水化合物奶昔)。一名志愿者没有完成所有的四个任务,这使会议的总次数从63次而不是64次。在热量计中停留24小时的过程中,受试者佩戴了连续的血糖监测系统,该系统用作受试者餐后血糖反应的基准。每分钟的分钟呼吸交换率(RER)数据显示与餐后状态的同时皮下葡萄糖浓度极佳的一致性。高碳水化合物奶昔的平均分钟RER对分钟的RER响应与高脂肪奶昔的响应显着不同。同样,两种饮食疗法的餐后RER斜率也显着不同。结果表明,全身呼吸量热仪可以用作研究人体底物氧化的短期动力学的工具。

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