Literature DB >> 12425130

Functional residual capacity: the human windbag.

Penelope S Villars1, Joseph T Kanusky, Michael G Levitzky.   

Abstract

Like the windbag of a bagpipe, the functional residual capacity (FRC) is the lung volume that acts as a reservoir of air for physiologic use. This reserve volume is particularly important during the period of apnea that occurs during induction of general anesthesia. The balance of the inward elastic recoil of the lung and the outward chest wall forces determines the FRC. Inward recoil forces are dependent on the interaction between the fibrous skeleton of the lung tissue and the alveolar surface tension regulated by pulmonary surfactant. Positioning and the use of inhaled and intravenous anesthetics influence outward chest wall forces. Factors that affect the FRC may be altered by volume recruitment maneuvers such as administration of vital capacity breaths, the application of positive end-expiratory pressure, and/or maintenance of anesthesia with a fraction of inspired oxygen of less than 1.0. This course reviews the basic anatomy and physiology of the FRC during the perioperative period. Understanding the processes that contribute to intraoperative loss of lung volume and knowledge of interventions that can allay them are paramount to providing a reliable and safe general anesthetic.

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Mesh:

Year:  2002        PMID: 12425130

Source DB:  PubMed          Journal:  AANA J        ISSN: 0094-6354


  3 in total

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Journal:  Eurasian J Med       Date:  2011-08

2.  A special oropharyngeal oxygenation device to facilitate apneic oxygenation in comparison to high flow oxygenation devices.

Authors:  Wolfgang A Wetsch; Daniel C Schroeder; Simon-Richard Finke; David Sander; Hannes Ecker; Bernd W Böttiger; Holger Herff
Journal:  Med Gas Res       Date:  2022 Jan-Mar

3.  Preventing and Treating Hypoxia: Using a Physiology Simulator to Demonstrate the Value of Pre-Oxygenation and the Futility of Hyperventilation.

Authors:  Anna A Lerant; Robert L Hester; Thomas G Coleman; William J Phillips; Jeffrey D Orledge; W Bosseau Murray
Journal:  Int J Med Sci       Date:  2015-07-23       Impact factor: 3.738

  3 in total

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