Lung volume, compliance, and arterial oxygen tensions during controlled ventilation
Myron B. Laver, John G. Morgan, HENRIK H. BENDIXEN, Edward P. Radford
Abstract
Myron B. Laver, John G. Morgan, HENRIK H. BENDIXEN, Edward P. Radford
Abstract
The relationship between total dynamic compliance (lung plus chest wall), functional residual capacity, and alveolar-arterial oxygen gradients (A-a DO2) was studied in paralyzed dogs during constant-volume ventilation with pure oxygen. Rapid changes in functional residual capacity (FRC), produced by forced deflation of the lungs, were associated with a rapid fall in total compliance and rise in A-a DO2. Subsequent hyperinflations (deep breaths) restored compliance to control levels more readily than A-a DO2. Changes in the FRC, measured with a whole-body plethysmograph, were related directly to total compliance and inversely to A-a DO2. Collapse of the terminal regions of the lungs produced by forced deflations was associated with a decrease in total compliance of 36%, and a decrease in FRC of 26% with a simultenaous rise in A-a DO2 to a mean of 547 mm Hg. It is concluded that intermittent deep breaths administered during constant-volume ventilation will not necessarily restore control levels of compliance and A-a DO2 equally well. This difference is probably dependent on altered alveolar surface characteristics or mechanics, or both, secondary to the collapse process, which prevent restoration of structural integrity by a deep breath. total dynamic compliance; functional residual capacity; alveolar-arterial oxygen tension difference; atelectasis; deep breath Submitted on October 31, 1963
OpenAlex reports 78 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The relationship between total dynamic compliance (lung plus chest wall), functional residual capacity, and alveolar-arterial oxygen gradients (A-a DO2) was studied in paralyzed dogs during constant-volume ventilation with pure oxygen. Rapid changes in functional residual capacity (FRC), produced by forced deflation of the lungs, were associated with a rapid fall in total compliance and rise in A-a DO2. Subsequent hyperinflations (deep breaths) restored compliance to control levels more readily than A-a DO2. Changes in the FRC, measured with a whole-body plethysmograph, were related directly to total compliance and inversely to A-a DO2. Collapse of the terminal regions of the lungs produced by forced deflations was associated with a decrease in total compliance of 36%, and a decrease in FRC of 26% with a simultenaous rise in A-a DO2 to a mean of 547 mm Hg. It is concluded that intermittent deep breaths administered during constant-volume ventilation will not necessarily restore control levels of compliance and A-a DO2 equally well. This difference is probably dependent on altered alveolar surface characteristics or mechanics, or both, secondary to the collapse process, which prevent restoration of structural integrity by a deep breath. total dynamic compliance; functional residual capacity; alveolar-arterial oxygen tension difference; atelectasis; deep breath Submitted on October 31, 1963
Key concepts: Functional residual capacity, Pulmonary compliance, Atelectasis, Lung volumes, Compliance (psychology), Medicine, Anesthesia, Plethysmograph