Skip to main content
OpenTrials
Not yet recruiting

NCT Number: NCT07804485

Assessment of Total Pulmonary Resistance sPAP/CO Between High Altitude HA vs. Sea Level LA in Healthy Individuals H

To study the effect of relocation from high altitude (Quito Ecuador: 2850m) to sea level on pulmonary resistance (sPAP/CO) and other hemodynamic outcomes in healthy individuals, who live permanently >2600m.

Not yet recruiting

Trial opening soon.

Get Notified

Key information

Age range

18 year–80 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

University Hospital of Zurich

Zurich, 8091, Switzerland

About this study

The aim of this research is to investigate the pulmonary resistance (sPAP/CO) by echocardiography and other hemodynamic outcomes before and after relocation (high altitude near their living altitude vs. sea level) in healthy individuals, who permanently live at high altitude over 2600m.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Adults aged 18-80 years and of all genders
  • Permanent residence > 2600 m
  • healthy: no self-perceived cardiopulmonary disease limiting daily activities
  • written informed consent to participate in the study.

Exclusion criteria

  • Age <18 years or >80 years
  • People who cannot follow the study investigations
  • Participant permanently living < 2600m.
  • Participant who traveled and stayed overnight at altitudes <2000 m in the past 4 weeks.
  • any self-perceived cardiopulmonary disease limiting daily activities

Treatment and study plan

Descent from 2850m to sea level

Behavioral

Descent from 2850m to sea level with a stay for 7 days

Primary outcomes

  1. Pulmonary resistance (sPAP/CO) after 7 days at sea level

    Time frame: From high altitude (2850m) to day 5-7 at sea level

    Difference/change in sPAP/CO by echocardiography between 2850m and Day 5-7 at sea level in healthy individuals

Secondary outcomes

  1. Tricuspid regurgitation velocity TRV after 7 days at sea level

    Time frame: From high altitude (2850m) to day 5-7 at sea level

    Difference/change in tricuspid regurgitation velocity TRV between 2850m and Day 5-7 at sea level in healthy individuals

  2. Cardiac output CO after 7 days at sea level

    Time frame: From high altitude (2850) to day 5-7 at sea level

    Difference/change in cardiac output CO between 2850m and Day 5-7 at sea level in healthy individuals

  3. Tricuspid annular plan systolic excursion TAPSE after 7 days at sea level

    Time frame: From high altitude (2850m) to day 5-7 at sea level

    Difference/change in tricuspid annular plan systolic excursion TAPSE between 2850m and Day 5-7 at sea level in healthy individuals

  4. Right ventricular strain after 7 days at sea level

    Time frame: From high altitude (2850m) to Day 5-7 at sea level

    Difference/change in right ventricular strain between 2850m and day 5-7 at sea level in healthy individuals

  5. Right atrial pressure RAP after 7 days at sea level

    Time frame: From high altitude (2850m) to Day 5-7 at sea level

    Difference/change in right atrial pressure RAP between 2850m and day 5-7 at sea level in healthy individuals

  6. Fractional area change FAC after 7 days at sea level

    Time frame: From high altitude (2850m) to Day 5-7 at sea level

    Difference/change in fractional area change FAC between 2850m and day 5-7 at sea level in healthy individuals

  7. PaO2 after 7 days at sea level

    Time frame: From high altitude (2850) to day 7 at sea level

    Difference/change in PaO2 (arterial blood gas analysis) between 2850m and sea level in healthy individuals

  8. PaCO2 after 7 days at sea level

    Time frame: From high altitude (2850) to day 7 at sea level

    Difference/change in PaCO2 (arterial blood gas analysis) between 2850m and sea level in healthy individuals

  9. Hemoglobin after 7 days at sea level

    Time frame: From high altitude (2850) to day 7 at sea level

    Difference/change in hemoglobin (arterial blood gas analysis) between 2850m and sea level in healthy individuals

  10. pH after 7 days at sea level

    Time frame: From high altitude (2850) to day 7 at sea level

    Difference/change in pH (arterial blood gas analysis) between 2850m and sea level in healthy individuals

  11. Acclimatization-Effect of pulmonary resistance (sPAP/CO) at sea level

    Time frame: From Day 2 to Day 5-7 at sea level

    Difference/change in pulmonary resistance (sPAP/CO) within a stay at sea level of 7 days (after relocation from high altitude) in healthy individuals

  12. Acclimatization-Effect of tricuspid regurgitation velocity TRV at sea level

    Time frame: From Day 2 to Day 5-7 at sea level

    Difference/change in tricuspid regurgitation velocity TRV within a stay at sea level of 7 days (after relocation from high altitude) in healthy individuals

  13. Acclimatization-Effect of cardiac output CO at sea level

    Time frame: From Day 2 to Day 5-7 at sea level

    Difference/change in cardiac output CO within a stay at sea level of 7 days (after relocation from high altitude) in healthy individuals

  14. Acclimatization-Effect of tricuspid annular plan systolic excursion TAPSE at sea level

    Time frame: From Day 2 to Day 5-7 at sea level

    Difference/change in tricuspid annular plan systolic excursion TAPSE within a stay at sea level for 7 days (after relocation from high altitude) in healthy individuals

  15. Acclimatization-Effect of right ventricular strain at sea level

    Time frame: From Day 2 to Day 5-7 at sea level

    Difference/change in right ventricular strain within a stay at sea level for 7 days (after relocation from high altitude) in healthy individuals

  16. Acclimatization-Effect of right atrial pressure RAP at sea level

    Time frame: From Day 2 to Day 5-7 at sea level

    Difference/change in right atrial pressure RAP within a stay at sea level for 7 days (after relocation from high altitude) in healthy individuals

  17. Acclimatization-Effect of fractional area change FAC at sea level

    Time frame: From Day 2 to Day 5-7 at sea level

    Difference/change in fractional area change FAC within a stay at sea level for 7 days (after relocation from high altitude) in healthy individuals

  18. Acclimatization-Effect of PaO2 at sea level

    Time frame: From Day 2 to Day 7 at sea level

    Difference/change in PaO2 (arterial blood gas analysis) within a stay at sea level for 7 days (after relocation from high altitude) in healthy individuals

  19. Acclimatization-Effect of PaCO2 at sea level

    Time frame: From Day 2 to Day 7 at sea level

    Difference/change in PaCO2 (arterial blood gas analysis) within a stay at sea level for 7 days (after relocation from high altitude) in healthy individuals

  20. Acclimatization-Effect of hemoglobin at sea level

    Time frame: From Day 2 to Day 7 at sea level

    Difference/change in hemoglobin (arterial blood gas analysis) within a stay at sea level for 7 days (after relocation from high altitude) in healthy individuals

  21. Acclimatization-Effect of pH at sea level

    Time frame: From Day 2 to Day 7 at sea level

    Difference/change in pH (arterial blood gas analysis) within a stay at sea level for 7 days (after relocation from high altitude) in healthy individuals

Study contacts

Contact information is provided by the study sponsor or research team.

Michael Furian, Prof. Dr. sc. ETH

CONTACT

+41442552220

Silvia Ulrich, Prof. Dr. med.

CONTACT

[email protected]

+41442552220

Sponsors and collaborators

Lead sponsor

Silvia Ulrich Somaini

Other

Registry information

Official study title

Effect of a One-week Descent From 2850m to Sea Level and Re-ascent in Patients With Pulmonary Arterial Hypertension and Healthy Controls Permanently Living > 2600m on Pulmonary Hemodynamics, Exercise Capacity, Blood Oxygenation, Sleep Disordered Breathing and Further Outcomes

Important dates

Study start
2026
Primary completion
2026
Study completion
2026
First posted
Sep 4, 2026
Registry last updated
Sep 4, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

Published trials that share one or more normalized conditions with this study.