首页> 美国卫生研究院文献>The Journal of Physiology >The ventilatory response of the human respiratory system to sine waves of alveolar carbon dioxide and hypoxia.
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The ventilatory response of the human respiratory system to sine waves of alveolar carbon dioxide and hypoxia.

机译:人呼吸系统对肺泡二氧化碳正弦波和缺氧的呼吸反应。

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摘要

Sine waves of alveolar CO2 at constant high alveolar O2, and sine waves of alveolar hypoxia (1/(PA, O2 -C), C congruent to 32 torr) at constant alveolar CO2 have been administered to three subjects in each case. Sine waves of six different periods were studied, ranging between 900 and 30 s for the CO2 sine waves and 300 and 20 s for the hypoxic sine waves. The sinusoidal variations in ventilation produced by these manoeuvres, expressed as amplitudes and phase shifts, were compared with values predicted from the dynamic responses to alveolar steps of gas tension already to be found in the literature. For the CO2 sine waves, the amplitudes of response agreed well with those predicted at the higher frequencies, but were less than predicted at the lower frequencies. For the hypoxic sine waves, the amplitude of response varied less with frequency than was predicted. For both the CO2 and the hypoxic sine waves, the phase shift of response was less than expected at the higher frequencies. An attempt was made to fit parameters to a simple model, based on the wash-in and wash-out of respiratory gases into and out of a tissue compartment, and used in the literature for describing the responses to step changes. No satisfactory fit was found. It is concluded that the simple model is unsatisfactory by itself for describing the responses to sinusoidal chemical stimulation; features additional to those included in the model are required to explain fully the responses seen. The possibilities for chemoreception at the higher frequencies are discussed in the light of the low phase shifts.
机译:在每种情况下,均向三名受试者施用了在恒定肺泡高氧水平下的肺泡CO2正弦波和在恒定肺泡CO2水平下的肺泡低氧(1 /(PA,O2-C),C等于32托)的正弦波。研究了六个不同周期的正弦波,CO2正弦波的范围为900到30 s,低氧正弦波的范围为300到20 s。将这些动作产生的通风的正弦变化表示为幅度和相移,并将其与根据对气体张力的肺泡阶跃的动态响应预测的值进行比较,该值已经在文献中找到。对于CO2正弦波,响应的幅度与在较高频率下预测的振幅吻合得很好,但在较低频率下却小于预测值。对于缺氧正弦波,响应的幅度随频率的变化比预期的要小。对于CO2和低氧正弦波,响应的相移在较高频率下均小于预期。尝试根据将呼吸气体冲入和冲出组织隔室,将参数拟合为简单模型,并在文献中用于描述对阶跃变化的响应。找不到满意的拟合。结论是,简单模型本身不能令人满意地描述对正弦化学刺激的响应。为了充分说明所看到的响应,还需要模型中包含的功能之外的其他功能。鉴于低相移,讨论了在较高频率下进行化学感受的可能性。

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