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Mechanical role of expiratory muscles during breathing in upright dogs

  • Université libre de Bruxelles

Research output: Contribution to journalArticlepeer-review

18 Scopus citations

Abstract

To examine the mechanical effects of the abdominal and triangularis sterni expiratory recruitment that occurs when anesthetized dogs are tilted head up, we measured both before and after cervical vagotomy the end-expiratory length of the costal and crural diaphragmatic segments and the end-expiratory lung volume (FRC) in eight spontaneously breathing animals during postural changes from supine (0°) to 80° head up. Tilting the animals from 0° to 80° head up in both conditions was associated with a gradual decrease in end-expiratory costal and crural diaphragmatic length and with a progressive increase in FRC. All these changes, however, were considerably larger (P < 0.005 or less) postvagotomy when the expiratory muscles were no longer recruited with tilting. Alterations in the elastic properties of the lung could not account for the effects of vagotomy on the postural changes. We conclude therefore that 1) by contracting during expiration, the canine expiratory muscles minimize the shortening of the diaphragm and the increase in FRC that the action of gravity would otherwise introduce, and 2) the end-expiratory diaphragmatic length and FRC in upright dogs are thus actively determined. The present data also indicate that by relaxing at end expiration, the expiratory muscles make a substantial contribution to tidal volume in upright dogs; in the 80° head-up posture, this contribution would amount to ~ 60% of tidal volume.

Original languageEnglish
Pages (from-to)1060-1067
Number of pages8
JournalJournal of Applied Physiology Respiratory Environmental and Exercise Physiology
Volume64
Issue number3
DOIs
StatePublished - 1988

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