Yanaura S, Kamei J, Goto K, Hosokawa T, Hiramori T, Misawa M, Hukuhara T
Nihon Yakurigaku Zasshi. 1982 Jun;79(6):543-50.
The phrenic nerve activity is an appropriate indicator for the output of the respiratory center as a whole, although a quantitative analysis of each of the frequency band components that constitute the neural activities during the respiratory reflex has not yet been made by other investigators. In the present study, we have made a quantitative analysis of each of the frequency band components of phrenic nerve activity during the cough reflex in anesthetized dogs. The efferent activities of the phrenic nerve were recorded from the central cut end of the phrenic nerve. Each fraction of phrenic nerve activity was separated into bands spanning a range of 100 Hz each by a variable filter and analyzed using a program for the power spectrum. The cough reflex was induced by mechanical stimulation of the tracheal mucosa. In the power spectrum analysis of each frequency band, increase in the power of each of the frequency band components was observed during the cough reflex. Particularly, the power of the 2 approximately 100 Hz band components increased significant as compared with the other frequency band components. Such as increase in the power of the 2 approximately 100 Hz band components toward the other frequency band components during the cough reflex was not observed after an i.v. administration of DMPP and lobeline, but the power increased extended over every frequency band. These findings suggest that the process for integrating the cough reflex was different from that of the other respiratory reflexes and that the present method is useful for investigating the central mechanisms of the cough reflex.
膈神经活动是整个呼吸中枢输出的一个合适指标,尽管其他研究者尚未对构成呼吸反射期间神经活动的每个频段成分进行定量分析。在本研究中,我们对麻醉犬咳嗽反射期间膈神经活动的每个频段成分进行了定量分析。膈神经的传出活动从膈神经的中枢切断端记录。膈神经活动的每个部分通过可变滤波器被分离成每个跨度为100Hz的频段,并使用功率谱程序进行分析。咳嗽反射通过气管黏膜的机械刺激诱发。在每个频段的功率谱分析中,在咳嗽反射期间观察到每个频段成分的功率增加。特别是,与其他频段成分相比,2至约100Hz频段成分的功率显著增加。静脉注射二甲基苯基哌嗪(DMPP)和洛贝林后,未观察到咳嗽反射期间2至约100Hz频段成分的功率向其他频段成分增加的情况,但功率增加扩展到了每个频段。这些发现表明,咳嗽反射的整合过程与其他呼吸反射不同,并且本方法对于研究咳嗽反射的中枢机制是有用的。