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人类的吸气气流模式。

Inspiratory flow pattern in humans.

作者信息

Lafortuna C L, Minetti A E, Mognoni P

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1984 Oct;57(4):1111-9. doi: 10.1152/jappl.1984.57.4.1111.

Abstract

The theoretical estimation of the mechanical work of breathing during inspiration at rest is based on the common assumption that the inspiratory airflow wave is a sine function of time. Different analytical studies have pointed out that from an energetic point of view a rectangular wave is more economical than a sine wave. Visual inspection of inspiratory flow waves recorded during exercise in humans and various animals suggests that a trend toward a rectangular flow wave may be a possible systematic response of the respiratory system. To test this hypothesis, the harmonic content of inspiratory flow waves that were recorded in six healthy subjects at rest, during exercise hyperventilation, and during a maximum voluntary ventilation (MVV) maneuver were evaluated by a Fourier analysis, and the results were compared with those obtained on sinusoidal and rectangular models. The dynamic work inherent in the experimental waves and in the sine-wave model was practically the same at rest; during exercise hyperventilation and MVV, the experimental wave was approximately 16-20% more economical than the sinusoidal one. It was concluded that even though at rest the sinusoidal model is a reasonably good approximation of inspiratory flow, during exercise and MVV, a physiological controller is probably operating in humans that can select a more economical inspiratory pattern. Other peculiarities of airflow wave during hyperventilation and some optimization criteria are also discussed.

摘要

静息时吸气过程中呼吸机械功的理论估算基于一个常见假设,即吸气气流波是时间的正弦函数。不同的分析研究指出,从能量角度来看,方波比正弦波更经济。对人类和各种动物运动过程中记录的吸气气流波进行直观检查表明,气流波趋向于方波可能是呼吸系统的一种可能的系统性反应。为了验证这一假设,通过傅里叶分析评估了六名健康受试者在静息、运动性通气过度和最大自主通气(MVV)操作期间记录的吸气气流波的谐波含量,并将结果与正弦波和方波模型的结果进行了比较。实验波和正弦波模型中固有的动态功在静息时实际上是相同的;在运动性通气过度和MVV期间,实验波比正弦波大约节省16% - 20%的能量。得出的结论是,尽管在静息时正弦波模型是吸气气流的一个合理近似,但在运动和MVV期间,人类体内可能存在一种生理控制器,它可以选择更经济的吸气模式。还讨论了通气过度期间气流波的其他特点以及一些优化标准。

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