Literature DB >> 6874469

Active inspiratory impedance in halothane-anesthetized humans.

P K Behrakis, B D Higgs, A Baydur, W A Zin, J Milic-Emili.   

Abstract

We have used the method of Siafakas et al. (J. Appl. Physiol.: Respirat. Environ. Exercise Physiol. 51: 109-121, 1981) to determine active elastance (E'rs) and flow resistance (R'rs) of the respiratory system in eight spontaneously breathing humans anesthetized with halothane. From measurements of flow (V) and volume (V) during unoccluded inspirations and of tracheal pressure (P0tr) during subsequent inspirations with the airways occluded at end expiration, we were able to compute E'rs and R'rs as slopes and intercepts of the following function: -P0tr/V = R'rs + E'rsV/V. These measurements were repeated during inspirations loaded with a series of linear flow resistances (delta R). Neither E'rs nor R'rs was significantly affected by delta R. On the average E'rs and R'rs were, respectively, 34.4 and 16.7% higher than the corresponding passive elastance and flow resistance of the respiratory system, indicating that during active breathing the internal impedance of the respiratory system increases. This provides an internal mechanism by which passive loads are compensated.

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Year:  1983        PMID: 6874469     DOI: 10.1152/jappl.1983.54.6.1477

Source DB:  PubMed          Journal:  J Appl Physiol Respir Environ Exerc Physiol        ISSN: 0161-7567


  3 in total

1.  Breathing pattern and respiratory mechanics in sevoflurane-anesthetized humans.

Authors:  Y Izumi; T Kochi; S Isono; T Ide; T Mizuguchi
Journal:  J Anesth       Date:  1990-10       Impact factor: 2.078

2.  Immediate response to inspiratory resistive loading in anesthetized patients with kyphoscoliosis: spirometric and neural effects.

Authors:  A Baydur; M Carlson
Journal:  Lung       Date:  1996       Impact factor: 2.584

3.  Methods and Applications in Respiratory Physiology: Respiratory Mechanics, Drive and Muscle Function in Neuromuscular and Chest Wall Disorders.

Authors:  Nina Patel; Kelvin Chong; Ahmet Baydur
Journal:  Front Physiol       Date:  2022-06-14       Impact factor: 4.755

  3 in total

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