Assessment of Lung Function (Lufu) at Sea Level LA vs. High Altitude HA in Patients With Pulmonary Arterial Hypertension PAH
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
Studie Overzicht
Toestand
Toestand
Conditie
Conditie
Interventie / Behandeling
Interventie / Behandeling
Gedetailleerde beschrijving
Studietype
Studietype
Inschrijving (Geschat)
Inschrijving
Fase
Fase
- Niet toepasbaar
Contacten en locaties
Studiecontact
Studiecontact
- Naam: Silvia Ulrich, Prof. Dr. med.
- Telefoonnummer: +41442552220
- E-mail: silvia.ulrich@usz.ch
Studie Contact Back-up
- Naam: Michael Furian, Prof. Dr. sc. ETH
- Telefoonnummer: +41442552220
Studie Locaties
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Zurich, Zwitserland, 8091
- University Hospital of Zurich
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Deelname Criteria
Geschiktheidscriteria
Geschiktheidscriteria
Leeftijden die in aanmerking komen voor studie
- Volwassen
- Oudere volwassene
Accepteert gezonde vrijwilligers
Beschrijving
Inclusion Criteria:
- Adult patients aged 18-80 years and of all genders
- Permanent residence > 2600 m
- Diagnosis of pulmonary arterial hypertension PAH (PAHHA-Group) according to guidelines
- Patients are stable on therapy
- NYHA (new york heart association) functional class I-III.
- written informed consent to participate in the study.
Exclusion Criteria:
- Age <18 years or >80 years
- unstable condition
- Patients who cannot follow the study investigations
- Patient permanently living < 2600m.
- Patients who traveled and stayed overnight at altitudes <2000 m in the past 4 weeks.
- Patients with moderate to severe concomitant lung disease (FEV1<70% or forced vital capacity <70%), severe parenchymal lung disease, severe smokers (>20 cigarettes/day)
- Severely hypoxemic patients at Quito permanently having persistent SpO2 (oxygen saturation by pulseoximetry) <80% on ambient air.
- Patient with a non-corrected ventricular septum defect
- Relevant concomitant other disease of the heart, kidney, liver, blood (anemia hemoglobin<11 g/dl)
Studie plan
Hoe is de studie opgezet?
Ontwerpdetails
- Primair doel: Ondersteunende zorg
- Toewijzing: NVT
- Interventioneel model: Opdracht voor een enkele groep
- Masker: Geen (open label)
Aantal wapens
Wapens en interventies
Deelnemersgroep / ArmDeelnemersgroep / Arm |
Interventie / BehandelingInterventie / Behandeling |
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Experimenteel: Lung function at sea level and at 2850m
Assessment of lung function and pulmonary resistance/reactance on day four at sea level (after prior descent from 2850m) and after re-ascent (after totally one week at sea level) back to 2850m by bus (in one day)
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Descent from 2850m to sea level with a stay for 7 days and re-ascent/return back to their usual living altitude at 2850m
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Wat meet het onderzoek?
Primaire uitkomstmaten
Primaire uitkomstmaten
Uitkomstmaat |
Maatregel Beschrijving |
Tijdsspanne |
|---|---|---|
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FEV1 after re-ascent to 2850m
Tijdsspanne: From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
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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 patients with pulmonary arterial hypertension
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From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
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Secundaire uitkomstmaten
Secundaire uitkomstmaten
Uitkomstmaat |
Maatregel Beschrijving |
Tijdsspanne |
|---|---|---|
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Forced Vital Capacity FVC after re-ascent to 2850m
Tijdsspanne: From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
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Difference/change in forced vital capacity FVC between sea level (measurement on the 4th day) and day after re-ascent to 2850m in patients with pulmonary arterial hypertension
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From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
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FEV1/FVC after re-ascent to 2850m
Tijdsspanne: From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
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Difference/change in FEV1/FVC between sea level (measurement on the 4th day) and day after re-ascent to 2850m in patients with pulmonary arterial hypertension
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From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
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Respiratory Impedance (forced oscillation technique) after re-ascent to 2850m
Tijdsspanne: From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
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Difference/change in respiratory impedance (forced oscillation technique) between sea level (measurement on the 4th day) and day after re-ascent to 2850m in patients with pulmonary arterial hypertension
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From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
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Respiratory resistance (forced oscillation technique) after re-ascent to 2850m
Tijdsspanne: From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
|
Difference/change in respiratory resistance (forced oscillation technique) between sea level (measurement on the 4th day) and day after re-ascent to 2850m in patients with pulmonary arterial hypertension
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From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
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Respiratory reactance (forced oscillation technique) after re-ascent to 2850m
Tijdsspanne: From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
|
Difference/change in respiratory reactance (forced oscillation technique) between sea level (measurement on the 4th day) and day after re-ascent to 2850m in patients with pulmonary arterial hypertension
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From Day 4 at sea level to the day after re-ascent (Day 9: approximately 6 days)
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FEV1 after 4 days at sea level
Tijdsspanne: From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
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Difference/change in FEV1 between 2850m (prior to descent) and day 4 at sea level in patients with pulmonary arterial disease
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From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
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Forced Vital Capacity FVC after 4 days at sea level
Tijdsspanne: From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
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Difference/change in forced vital capacity FVC between 2850m (prior to descent) and day 4 at sea level in patients with pulmonary arterial disease
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From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
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FEV1/FVC after 4 days at sea level
Tijdsspanne: From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
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Difference/change in FEV1/FVC between 2850m (prior to descent) and day 4 at sea level in patients with pulmonary arterial disease
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From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
|
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Respiratory Impedance (forced oscillation technique) after 4 days at sea level
Tijdsspanne: From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
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Difference/change in respiratory impedance (forced oscillation technique) between 2850m (prior to descent) and day 4 at sea level in patients with pulmonary arterial disease
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From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
|
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Respiratory resistance (forced oscillation technique) after 4 days at sea level
Tijdsspanne: From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
|
Difference/change in respiratory resistance (forced oscillation technique) between 2850m (prior to descent) and day 4 at sea level in patients with pulmonary arterial disease
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From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
|
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Respiratory reactance (forced oscillation technique) after 4 days at sea level
Tijdsspanne: From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
|
Difference/change in respiratory reactance (forced oscillation technique) between 2850m (prior to descent) and day 4 at sea level in patients with pulmonary arterial disease
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From high altitude (Day 0, 2850m) to day 4 at sea level (approximately 5 days)
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FEV1 pre-descent and after re-ascent (2850m)
Tijdsspanne: 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)
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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 patients with pulmonary arterial disease
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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)
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Forced Vital Capacity FVC pre-descent and after re-ascent (2850m)
Tijdsspanne: 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)
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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 patients with pulmonary arterial hypertension
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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)
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FEV1/FVC pre-descent and after re-ascent (2850m)
Tijdsspanne: 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)
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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 patients with pulmonary arterial hypertension
|
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)
|
|
Respiratory Impedance (forced oscillation technique) pre-descent and after re-ascent (2850m)
Tijdsspanne: 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 patients with pulmonary arterial hypertension
|
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)
|
|
Respiratory resistance (forced oscillation technique) pre-descent and after re-ascent (2850m)
Tijdsspanne: 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 patients with pulmonary arterial hypertension
|
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)
|
|
Respiratory reactance (forced oscillation technique) pre-descent and after re-ascent (2850m)
Tijdsspanne: 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 patients with pulmonary arterial hypertension
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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)
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Medewerkers en onderzoekers
Sponsor
Sponsor
Onderzoekers
Onderzoekers
- Hoofdonderzoeker: Silvia Ulrich, University Hospital Zurich, Departement of Pulmonology
- Hoofdonderzoeker: Rodrigo Hoyos, Hospital Carlos Andrade Marin of Quito, Ecuador
Studie record data
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Studieregistratiedata
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Meer informatie
Termen gerelateerd aan deze studie
Trefwoorden
Aanvullende relevante MeSH-voorwaarden
Andere studie-ID-nummers
Andere studie-ID-nummers
- Ec_LAvsHA_Lufu_PAH
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