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一种用于评估猫对二氧化碳通气反应的假呼吸技术。

A pseudo-rebreathing technique for assessing the ventilatory response to carbon dioxide in cats.

作者信息

Berkenbosch A, DeGoede J, Olievier C N, Schuitmaker J J

出版信息

J Physiol. 1986 Dec;381:483-95. doi: 10.1113/jphysiol.1986.sp016340.

Abstract
  1. The ventilatory sensitivity to CO2 obtained from a non-steady-state step-ramp CO2 challenge (analogous to the Read rebreathing method) was compared with the one of the steady-state method. 2. Experiments were performed during normoxia on twenty cats anaesthetized with chloralose-urethane. In eight of these cats additional measurements were carried out during metabolic acidosis and alkalosis. 3. The slope of the non-steady-state ventilatory response curve to CO2 was not significantly different from the steady-state one only if the ratio of the step-wise increase in end-tidal PCO2 (PET,CO2) (A) above its resting value and the subsequent rate of rise of the PET,CO2 (R) was equal to the time constant of the central chemoreflex pathway (tau c). This also held true during metabolic acidosis and alkalosis. 4. It is predicted that in human beings during hyperoxia the ventilatory response line obtained with Read's rebreathing method is to a fair approximation shifted to the right by a value of A with respect to the steady-state response line, provided A/R = tau c. 5. We argue that Read's prescription that a PET,CO2 equilibrium should be established between mixed venous blood, arterial blood and end-tidal gas has to be regarded as an experimental condition leading to stable-experiments rather than dictated by physiological mechanisms.
摘要
  1. 将通过非稳态阶梯-斜坡式二氧化碳激发试验(类似于里德重复呼吸法)获得的对二氧化碳的通气敏感性与稳态方法获得的通气敏感性进行比较。2. 在常氧条件下,对20只用氯醛糖-乌拉坦麻醉的猫进行实验。其中8只猫在代谢性酸中毒和碱中毒期间进行了额外测量。3. 仅当呼气末二氧化碳分压(PET,CO2)高于其静息值的逐步增加量(A)与随后的PET,CO2上升速率(R)之比等于中枢化学反射途径的时间常数(tau c)时,非稳态二氧化碳通气反应曲线的斜率才与稳态曲线无显著差异。在代谢性酸中毒和碱中毒期间也是如此。4. 据预测,在人类高氧状态下,若A/R = tau c,用里德重复呼吸法获得的通气反应线相对于稳态反应线会向右平移一个A值。5. 我们认为,里德提出的在混合静脉血、动脉血和呼气末气体之间应建立PET,CO2平衡的要求,应被视为一种能使实验稳定的实验条件,而非由生理机制所决定。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/681e/1182992/159c097dbfa6/jphysiol00541-0492-a.jpg

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