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Increased wedge pressure facilitates decreased lung vascular resistance during upright exercise.

Publication ,  Journal Article
Reeves, JT; Moon, RE; Grover, RF; Groves, BM
Published in: Chest
March 1988

Duke Scholars

Published In

Chest

DOI

ISSN

0012-3692

Publication Date

March 1988

Volume

93

Issue

3 Suppl

Start / End Page

97S / 99S

Location

United States

Related Subject Headings

  • Vascular Resistance
  • Respiratory System
  • Pulmonary Wedge Pressure
  • Pulmonary Circulation
  • Posture
  • Physical Exertion
  • Oxygen Consumption
  • Humans
  • Biological Transport
  • 3202 Clinical sciences
 

Citation

APA
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ICMJE
MLA
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Reeves, J. T., Moon, R. E., Grover, R. F., & Groves, B. M. (1988). Increased wedge pressure facilitates decreased lung vascular resistance during upright exercise. Chest, 93(3 Suppl), 97S-99S. https://doi.org/10.1378/chest.93.3_supplement.97s
Reeves, J. T., R. E. Moon, R. F. Grover, and B. M. Groves. “Increased wedge pressure facilitates decreased lung vascular resistance during upright exercise.Chest 93, no. 3 Suppl (March 1988): 97S-99S. https://doi.org/10.1378/chest.93.3_supplement.97s.
Reeves JT, Moon RE, Grover RF, Groves BM. Increased wedge pressure facilitates decreased lung vascular resistance during upright exercise. Chest. 1988 Mar;93(3 Suppl):97S-99S.
Reeves, J. T., et al. “Increased wedge pressure facilitates decreased lung vascular resistance during upright exercise.Chest, vol. 93, no. 3 Suppl, Mar. 1988, pp. 97S-99S. Pubmed, doi:10.1378/chest.93.3_supplement.97s.
Reeves JT, Moon RE, Grover RF, Groves BM. Increased wedge pressure facilitates decreased lung vascular resistance during upright exercise. Chest. 1988 Mar;93(3 Suppl):97S-99S.
Journal cover image

Published In

Chest

DOI

ISSN

0012-3692

Publication Date

March 1988

Volume

93

Issue

3 Suppl

Start / End Page

97S / 99S

Location

United States

Related Subject Headings

  • Vascular Resistance
  • Respiratory System
  • Pulmonary Wedge Pressure
  • Pulmonary Circulation
  • Posture
  • Physical Exertion
  • Oxygen Consumption
  • Humans
  • Biological Transport
  • 3202 Clinical sciences