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脑桥呼吸活动参与吸气/呼气阶段转换。

Pontine respiratory activity involved in inspiratory/expiratory phase transition.

作者信息

Mörschel Michael, Dutschmann Mathias

机构信息

Department of Neuro- and Sensory Physiology, University Medicine Göttingen, Georg August University, Humboldtallee 23, 37073 Göttingen, Germany.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2009 Sep 12;364(1529):2517-26. doi: 10.1098/rstb.2009.0074.

Abstract

Control of the timing of the inspiratory/expiratory (IE) phase transition is a hallmark of respiratory pattern formation. In principle, sensory feedback from pulmonary stretch receptors (Breuer-Hering reflex, BHR) is seen as the major controller for the IE phase transition, while pontine-based control of IE phase transition by both the pontine Kölliker-Fuse nucleus (KF) and parabrachial complex is seen as a secondary or backup mechanism. However, previous studies have shown that the BHR can habituate in vivo. Thus, habituation reduces sensory feedback, so the role of the pons, and specifically the KF, for IE phase transition may increase dramatically. Pontine-mediated control of the IE phase transition is not completely understood. In the present review, we discuss existing models for ponto-medullary interaction that may be involved in the control of inspiratory duration and IE transition. We also present intracellular recordings of pontine respiratory units derived from an in situ intra-arterially perfused brainstem preparation of rats. With the absence of lung inflation, this preparation generates a normal respiratory pattern and many of the recorded pontine units demonstrated phasic respiratory-related activity. The analysis of changes in membrane potentials of pontine respiratory neurons has allowed us to propose a number of pontine-medullary interactions not considered before. The involvement of these putative interactions in pontine-mediated control of IE phase transitions is discussed.

摘要

吸气/呼气(IE)相位转换时间的控制是呼吸模式形成的一个标志。原则上,来自肺牵张感受器的感觉反馈(布雷尔-黑林反射,BHR)被视为IE相位转换的主要控制器,而脑桥的柯利克-富斯核(KF)和臂旁复合体对IE相位转换的基于脑桥的控制则被视为次要或备用机制。然而,先前的研究表明,BHR在体内会产生习惯化。因此,习惯化会减少感觉反馈,所以脑桥,特别是KF,在IE相位转换中的作用可能会显著增加。脑桥介导的IE相位转换控制尚未完全了解。在本综述中,我们讨论了可能参与吸气持续时间和IE转换控制的脑桥-延髓相互作用的现有模型。我们还展示了源自大鼠原位动脉内灌注脑干制备物的脑桥呼吸单位的细胞内记录。在没有肺充气的情况下,该制备物产生正常的呼吸模式,并且许多记录的脑桥单位表现出与呼吸相关的相位活动。对脑桥呼吸神经元膜电位变化的分析使我们能够提出一些以前未考虑过的脑桥-延髓相互作用。讨论了这些假定的相互作用在脑桥介导的IE相位转换控制中的参与情况。

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