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首页> 外文期刊>American Journal of Physiology >A new approach for flow-through respirometry measurements in humans
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A new approach for flow-through respirometry measurements in humans

机译:一种新的人类流通呼吸测量测量的新方法

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Indirect whole room calorimetry is commonly used in studies of human metabolism. These calorimeters can be configured as either push or pull systems. A major obstacle to accurately calculating gas exchange rates in a pull system is that the excurrent flow rate is increased above the incurrent flow rate, because the organism produces water vapor, which also dilutes the concentrations of respiratory gasses in the excurrent sample. A common approach to this problem is to dry the excurrent gasses prior to measurement, but if drying is incomplete, large errors in the calculated oxygen consumption will result. The other major potential source of error is fluctuations in the concentration of O2 and CO2 in the incurrent airstream. We describe a novel approach to measuring gas exchange using a pull-type whole room indirect calorimeter. Relative humidity and temperature of the incurrent and excurrent airstreams are measured continuously using high-precision, relative humidity and temperature sensors, permitting accurate measurement of water vapor pressure. The excurrent flow rates are then adjusted to eliminate the flow contribution from water vapor, and respiratory gas concentrations are adjusted to eliminate the effect of water vapor dilution. In addition, a novel switching approach is used that permits constant, uninterrupted measurement of the excurrent airstream while allowing frequent measurements of the incurrent airstream. To demonstrate the accuracy of this approach, we present the results of validation trials compared with our existing system and metabolic carts, as well as the results of standard propane combustion tests.
机译:间接整个房间量热法通常用于人类新陈代谢的研究。这些量热计可以配置为推动或拉动系统。准确地计算拉动系统中的气体交换率的主要障碍是经常流速增加到急流率高,因为生物体产生水蒸气,这也稀释了经序样品中的呼吸气体浓度。这种问题的常见方法是在测量之前干燥经调节气体,但如果干燥是不完整的,则将导致计算的氧气消耗中的大误差。其他主要潜在误差源是在发布的气流中浓度和二氧化碳浓度的波动。我们描述了一种使用拉式全室间接热量计测量气体交换的新方法。使用高精度,相对湿度和温度传感器连续测量的相对湿度和温度,允许精确测量水蒸气压力。然后调整经电流流速以消除水蒸气的流量贡献,并调整呼吸气体浓度以消除水蒸气稀释的影响。另外,使用一种新颖的切换方法,其允许恒定,不间断地测量经电流气流,同时允许频繁测量传递的气流。为了展示这种方法的准确性,我们介绍了验证试验的结果,与我们现有的系统和代谢推车相比,以及标准丙烷燃烧试验的结果。

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