Literature DB >> 3222560

Mechanism of increased collateral airway resistance during inhomogeneous inflation of excised dog lungs.

S D Fuller1, N E Robinson.   

Abstract

Collateral airway resistance was measured during inflation of an excised lung lobe or a segment within the lobe. Gas blown into the outer lumen of a double lumen catheter (Vcoll) inflated the segment and exited via collateral airways. Pressure at the catheter tip (Pct) was measured through the inner lumen of the catheter, and transpulmonary pressure (Pao) was measured at the lobar bronchus. A pleural capsule measured pressure in the segmental subpleural alveoli (Ps). The segment was inflated with helium (He), air, or sulfurhexafluoride; the lobe was ventilated with air. Collateral airway resistance [Rcoll = (Pct-Pao)/Vcoll], intrasegmental airway resistance [Rs = (Pct-Ps)/Vcoll], and resistance of airways passing through the segment-lobar interface [Ri = (Ps-Pao)/Vcoll] were calculated. Rcoll, Rs, and Ri were decreased by lobar inflation and increased by segment inflation. The latter increase was due to nonlaminar flow in intrasegmental airways. The major resistance was Ri when Vcoll was laminar or transitional. Moody plots suggested that lobar inflation caused intrasegmental airway dilation whereas segment inflation did not affect segment airway geometry.

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Year:  1988        PMID: 3222560     DOI: 10.1016/0034-5687(88)90034-5

Source DB:  PubMed          Journal:  Respir Physiol        ISSN: 0034-5687


  1 in total

1.  Influence of lung volume hysteresis on collateral resistance in intact dogs.

Authors:  Y Cormier; L Atton; F Sériès
Journal:  Lung       Date:  1993       Impact factor: 2.584

  1 in total

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