Medical College of Wisconsin
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Respiratory rhythm generation: converging concepts from in vitro and in vivo approaches? Respir Physiol Neurobiol 2002 Jul;131(1-2):43-56

Date

07/11/2002

Pubmed ID

12106994

DOI

10.1016/s1569-9048(02)00036-8

Scopus ID

2-s2.0-0036308415 (requires institutional sign-in at Scopus site)   38 Citations

Abstract

The timing and activation pattern of breathing movements are determined by the respiratory network. This network is amenable to a variety of in vivo and in vitro approaches, which offers a unique opportunity to investigate multiple organizational levels. It is only recently, however, that concepts obtained under in vivo and in vitro conditions are being integrated into a coherent model of breathing behavior. For example, the pre-Bötzinger complex as an essential site for rhythm generation was first identified in vitro, but has since been verified in vivo. Conversely, timing signals provided by other central and peripheral neuronal areas have so far been investigated in vivo, but it is now possible to address these issues with more complex in vitro preparations. Several key issues remain unresolved. For example, to what extent is the respiratory pattern controlled independently of the underlying rhythm? Answers to this and other questions require a dissection of mechanisms that is only possible through a complementary combination of experimental approaches.

Author List

Ramirez JM, Zuperku EJ, Alheid GF, Lieske SP, Ptak K, McCrimmon DR

Author

Edward J. Zuperku PhD, MS Emeritus Professor in the Anesthesiology department at Medical College of Wisconsin




MESH terms used to index this publication - Major topics in bold

Animals
Brain Stem
Humans
Motor Neurons
Nerve Net
Neural Inhibition
Respiratory Mechanics