University Hospital of Zurich
Zurich, 8091, Switzerland
NCT Number: NCT07804537
To study the effect of a re-ascent to high altitude (Quito Ecuador: 2850m) after a one-week stay at sea level (after prior descent from 2850m) on lung function and pulmonary resistance/reactance in healthy individuals, who live permanently > 2600m.
Trial opening soon.
Get Notified18 year–80 year
All sexes
Interventional
Not applicable
Zurich, 8091, Switzerland
The aim of this research is to investigate the lung function and pulmonary resistance/reactance before and after re-ascent (sea level for 7 days after prior descent from 2850m vs. re-ascent to 2850m) in healthy individuals, who permanently live at high altitude over 2600m.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Descent from 2850m to sea level with a stay for 7 days and re-ascent/return back to their usual living altitude at 2850m
Time frame: From Day 4 at sea level to the day after re-ascent (Day 9)
Difference/change in forced expiratory volume in one second FEV1 between sea level (measurement on the 4th day) and day after re-ascent to 2850m in healthy individuals
Time frame: From Day 4 at sea level to the day after re-ascent (Day 9)
Difference/change in forced vital capacity FVC between sea level (measurement on the 4th day) and day after re-ascent to 2850m in healthy individuals
Time frame: From Day 4 at sea level to the day after re-ascent (Day 9)
Difference/change in FEV1/FVC between sea level (measurement on the 4th day) and day after re-ascent to 2850m in healthy individuals
Time frame: From Day 4 at sea level to the day after re-ascent (Day 9)
Difference/change in respiratory impedance (forced oscillation technique) between sea level (measurement on the 4th day) and day after re-ascent to 2850m in healthy individuals
Time frame: From Day 4 at sea level to the day after re-ascent (Day 9)
Difference/change in respiratory resistance (forced oscillation technique) between sea level (measurement on the 4th day) and day after re-ascent to 2850m in healthy individuals
Time frame: From Day 4 at sea level to the day after re-ascent (Day 9)
Difference/change in respiratory reactance (forced oscillation technique) between sea level (measurement on the 4th day) and day after re-ascent to 2850m in healthy individuals
Time frame: From high altitude (2850m) to day 4 at sea level
Difference/change in FEV1 between 2850m (prior to descent) and day 4 at sea level in healthy individuals
Time frame: From high altitude (2850m) to day 4 at sea level
Difference/change in forced vital capacity FVC between 2850m (prior to descent) and day 4 at sea level in healthy individuals
Time frame: From high altitude (2850m) to day 4 at sea level
Difference/change in FEV1/FVC between 2850m (prior to descent) and day 4 at sea level in healthy individuals
Time frame: From high altitude (2850m) to day 4 at sea level
Difference/change in respiratory Impedance (forced oscillation technique) between 2850m (prior to descent) and day 4 at sea level in healthy individuals
Time frame: From high altitude (2850m) to day 4 at sea level
Difference/change in respiratory resistance (forced oscillation technique) between 2850m (prior to descent) and day 4 at sea level in healthy individuals
Time frame: From high altitude (2850m) to day 4 at sea level
Difference/change in respiratory reactance (forced oscillation technique) between 2850m (prior to descent) and day 4 at sea level in healthy individuals
Time frame: Baseline at 2850m followed by a one-week stay at sea level to the day after re-ascent back to 2850m (time frame approximately 11 days)
Difference/change in FEV1 at 2850m with a one-week stay at sea level in between (day pre-descent vs. day after re-ascent) in healthy individuals
Time frame: Baseline at 2850m followed by a one-week stay at sea level to the day after re-ascent back to 2850m (time frame approximately 11 days)
Difference/change in forced vital capacity FVC at 2850m with a one-week stay at sea level in between (day pre-descent vs. day after re-ascent) in healthy individuals
Time frame: Baseline at 2850m followed by a one-week stay at sea level to the day after re-ascent back to 2850m (time frame approximately 11 days)
Difference/change in FEV1/FVC at 2850m with a one-week stay at sea level in between (day pre-descent vs. day after re-ascent) in healthy individuals
Time frame: Baseline at 2850m followed by a one-week stay at sea level to the day after re-ascent back to 2850m (time frame approximately 11 days)
Difference/change in respiratory impedance (forced oscillation technique) at 2850m with a one-week stay at sea level in between (day pre-descent vs. day after re-ascent) in healthy individuals
Time frame: Baseline at 2850m followed by a one-week stay at sea level to the day after re-ascent back to 2850m (time frame approximately 11 days)
Difference/change in respiratory resistance (forced oscillation technique) at 2850m with a one-week stay at sea level in between (day pre-descent vs. day after re-ascent) in healthy individuals
Time frame: Baseline at 2850m followed by a one-week stay at sea level to the day after re-ascent back to 2850m (time frame approximately 11 days)
Difference/change in respiratory reactance (forced oscillation technique) at 2850m with a one-week stay at sea level in between (day pre-descent vs. day after re-ascent) in healthy individuals
Contact information is provided by the study sponsor or research team.
Michael Furian, Prof. Dr. sc. ETH
CONTACT
Silvia Ulrich, Prof. Dr. med.
CONTACT
Silvia Ulrich Somaini
Other
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
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