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关于黑林-布雷尔反射中枢效应的研究。

Studies on the central effects of Hering-Breuer reflexes.

作者信息

Bystrzycka E, Huszczuk A

出版信息

Acta Neurobiol Exp (Wars). 1973;33(1):364-73.

PMID:4698512
Abstract

In our previous experiments performed with rabbits, it was found out that the strength of both inflation and deflation Hering-Breuer reflexes depends on the level of anaesthesia and ventilation as correlative factors in spontaneously and artificially ventilated animals, though this dependence was quantitatively and qualitatively different in these two groups. On the basis of the recent evidence pointing to the rapidly conducting fibres and thus indirectly the pulmonary stretch receptors as the pathway along which both Hering-Breuer reflexes are transmitted, an attempt has been made to show how both parameters of ventilation are centrally controlled in response to afferent information concerning such mechanical factors as resistance and compliance of the respiratory system. The results presented seem to allow the following conclusions: (i) An important role may be ascribed to the pulmonary stretch receptors in transmission of both Hering-Breuer reflexes. (ii) In quiet breathing the central mechanisms of the Hering-Breuer inflation reflex are set to regulate tidal volume on the basis of analysis of the compliance of the respiratory apparatus at the given moment. Their role to the control of the respiratory frequency is of minor importance. (iii) The contribution of the pulmonary stretch receptors to the control of respiratory frequency is based on information about the resistance of the airways. This parameter influences the ratio of duration of the activity phase to silent phase in discharges of pulmonary stretch receptors.

摘要

在我们之前用兔子进行的实验中,发现无论是吸气还是呼气的黑林-布雷尔反射的强度,都取决于麻醉水平和通气情况,这是自主通气和人工通气动物中的相关因素,不过这两组动物在数量和质量上的依赖性有所不同。基于最近的证据表明,快速传导纤维以及间接的肺牵张感受器是黑林-布雷尔反射的传导途径,我们试图展示通气的两个参数是如何根据有关呼吸系统阻力和顺应性等机械因素的传入信息进行中枢控制的。所呈现的结果似乎可以得出以下结论:(i)肺牵张感受器在黑林-布雷尔反射的传导中可能起着重要作用。(ii)在安静呼吸时,黑林-布雷尔吸气反射的中枢机制通过分析给定时刻呼吸装置的顺应性来调节潮气量。它们对呼吸频率控制的作用较小。(iii)肺牵张感受器对呼吸频率控制的贡献基于气道阻力的信息。这个参数会影响肺牵张感受器放电中活动期与静息期的持续时间比例。

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