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禽类肺内化学感受器对静脉血二氧化碳和通气气流的反应。

Response of avian intrapulmonary chemoreceptors to venous CO2 and ventilatory gas flow.

作者信息

Banzett R B, Burger R E

出版信息

Respir Physiol. 1977 Feb;29(1):63-72. doi: 10.1016/0034-5687(77)90117-7.

Abstract

Avian intrapulmonary chemoreceptor activity is reduced by increasing airway PCO2 from 0 to 60 torr. Using extracellular electrodes, we recorded discharge of individual intrapulmonary chemoreceptor cell bodies in the left nodose ganglion of the rooster (Gallus domesticus) during unidirectional ventilation of the lungs. All receptors recorded were in the left lung. To vary pulmonary arterial PCO2 independently of ventilation, we ventilated the two lungs separately and supplied the left pulmonary circulation with systemic arterial blood. When the PCO2 in the pulmonary arterial blood was increased, discharge frequency decreased in all 21 receptors studied. Sensitivity to pulmonary arterial PCO2 was similar to sensitivity to airway PCO2. When PCO2 of ventilatory gas was lower than that of pulmonary arterial blood, discharge frequency of the receptor increased when pulmonary blood flow was stopped. Discharge frequency also increased when PCO2 at the receptor site was lowered by increased ventilatory gas flow. We conclude that intrapulmonary chemoreceptors respond to the delivery and removal of CO2 by blood and ventilatory gas. This suggests that the receptors are located within the respiratory gas exchange region of the lung. Because these receptors have a strong inhibitory effect on ventilation, they may serve to (1) adjust minute ventilation to the rate of metabolic CO2 production and (2) to regulate individual breath size.

摘要

将气道二氧化碳分压从0升至60托可降低禽类肺内化学感受器的活性。我们使用细胞外电极,在公鸡(家鸡)左结状神经节记录单个肺内化学感受器细胞体在肺单向通气时的放电情况。所有记录的感受器均位于左肺。为了独立于通气改变肺动脉二氧化碳分压,我们分别对两侧肺进行通气,并向左肺循环供应体循环动脉血。当肺动脉血中的二氧化碳分压升高时,所研究的21个感受器的放电频率均降低。对肺动脉二氧化碳分压的敏感性与对气道二氧化碳分压的敏感性相似。当通气气体的二氧化碳分压低于肺动脉血的二氧化碳分压时,停止肺血流时感受器的放电频率增加。当通过增加通气气体流量降低感受器部位的二氧化碳分压时,放电频率也增加。我们得出结论,肺内化学感受器对血液和通气气体中二氧化碳的输送和清除作出反应。这表明这些感受器位于肺的呼吸气体交换区域内。由于这些感受器对通气有强烈的抑制作用,它们可能起到以下作用:(1)根据代谢产生二氧化碳的速率调节分钟通气量;(2)调节单次呼吸的大小。

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