Pontine respiratory activity involved in inspiratory/expiratory phase transition

M Mörschel, M Dutschmann - … Transactions of the …, 2009 - royalsocietypublishing.org
M Mörschel, M Dutschmann
Philosophical Transactions of the Royal Society B …, 2009royalsocietypublishing.org
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 …
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.
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