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Exercise Pathophysiology in Patients with Chronic Mountain Sickness

  • Herman Groepenhoff
  • , Marieke J. Overbeek
  • , Massimiliano Mulè
  • , Mart Van Der Plas
  • , Paola Argiento
  • , Francisco C. Villafuerte
  • , Sophia Beloka
  • , Vitalie Faoro
  • , Jose L. Macarlupu
  • , Herve Guenard
  • , Claire De Bisschop
  • , Jean Benoit Martinot
  • , Rebecca Vanderpool
  • , Dante Penaloza
  • , Robert Naeije
  • VU University Medical Center
  • University of Catania
  • Onze Lieve Vrouwe Gasthuis
  • Second University of Naples
  • Free University of Brussels
  • University Hospital Bordeaux
  • Poitiers University
  • St Elisabeth Hospital
  • Universidad Peruana Cayetano Heredia

Research output: Contribution to journalArticlepeer-review

77 Scopus citations

Abstract

Background: Chronic mountain sickness (CMS) is characterized by a combination of excessive erythrocytosis, severe hypoxemia, and pulmonary hypertension, all of which affect exercise capacity. Methods: Thirteen patients with CMS and 15 healthy highlander and 15 newcomer lowlander control subjects were investigated at an altitude of 4,350 m (Cerro de Pasco, Peru). All of them underwent measurements of diffusing capacity of lung for nitric oxide and carbon monoxide at rest, echocardiography for estimation of mean pulmonary arterial pressure and cardiac output at rest and at exercise, and an incremental cycle ergometer cardiopulmonary exercise test. Results: The patients with CMS, the healthy highlanders, and the newcomer lowlanders reached a similar maximal oxygen uptake at 32 ± 1, 32 ± 2, and 33 ± 2 mL/min/kg, respectively, mean ± SE (P = .8), with ventilatory equivalents for CO2 vs end-tidal PCO2, measured at the anaerobic threshold, of 0.9 ± 0.1, 1.2 ± 0.1, and 1.4 ± 0.1 mm Hg, respectively (P < .001); arte rial oxygen content of 26 ± 1, 21 ± 2, and 16 ± 1 mL/dL, respectively (P < .001); diffusing capacity for carbon monoxide corrected for alveolar volume of 155% ± 4%, 150% ± 5%, and 120% ± 3% predicted, respectively (P < .001), with diffusing capacity for nitric oxide and carbon monoxide ratios of 4.7 ± 0.1 at sea level decreased to 3.6 ± 0.1, 3.7 ± 0.1, and 3.9 ± 0.1, respectively (P < .05) and a maximal exercise mean pulmonary arterial pressure at 56 ± 4, 42 ± 3, and 31 ± 2 mm Hg, respectively (P < .001). Conclusions: The aerobic exercise capacity of patients with CMS is preserved in spite of severe pulmonary hypertension and relative hypoventilation, probably by a combination of increased oxygen carrying capacity of the blood and lung diffusion, the latter being predominantly due to an increased capillary blood volume.

Original languageEnglish
Pages (from-to)877-884
Number of pages8
JournalChest
Volume142
Issue number4
DOIs
StatePublished - Oct 2012

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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