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Sensitivity of the Step Test to Detect Improvement in Dyspnea Following Bronchodilation in Patients With Chronic Obstructive Pulmonary Disease

Measurement of Exertional Dyspnea in the Primary Care Setting in Patients With COPD, Phase III: Sensitivity of the Step Test to Detect Improvement in Dyspnea Following Bronchodilation in Patients With COPD

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01655199
Acronym
CODEx
Enrollment
40
Registered
2012-08-01
Start date
2012-09-30
Completion date
2014-07-31
Last updated
2013-09-18

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Dyspnea, Moderate Chronic Obstructive Pulmonary Disease, Severe Chronic Obstructive Pulmonary Disease

Keywords

Chronic Obstructive Pulmonary Disease, Lung function, Exertional dyspnea, Exercise capacity, Pulmonary function, Pleural pressures

Brief summary

During the previous phases of the project (Phase I and II), two new field tests have been designed and validated for an integration in a primary care setting in Chronic Obstructive Pulmonary Disease (COPD). These new field tests are 3-min paced-walk test (3MPWT) and 3-min paced step test (3MPST). If the validity and sensitivity of the TM3 could be highlighted, particularly by the reduction of dyspnea level following bronchodilatation, Phase II highlight that the 3MPST does not allow to detect this decrease of dyspnea after bronchodilatation. The use of too high step rates could explain these results through a hypothesis relative to neuromechanical coupling of dyspnea. The main objective of this trial is to follow the investigations on the sensitivity of 3MPST to detect the effects of pharmacological intervention on the exertional dyspnea in COPD patient. The hypothesis of this work is that the use of lower step rates cadences could allow to detect an improvement of exertional dyspnea following treatment-induced bronchodilatation, contrary to higher step rates.

Detailed description

For this project, 40 patients with COPD will be recruited in 2 centres (in the Institute of Cardiology and Pneumology of Quebec and in the Chest Institute of Montreal). For each patient, three visits will be performed. During the first visit, baseline pulmonary function and maximal exercise capacity will be evaluated and the patients will be familiarized with step test proceedings. Between the different visits, a 3-7 days period will be respected. During the second and the third visits, 4 step tests will be performed at 4 different rates, following one of the two conditions (placebo or bronchodilatation). This project will propose two randomization levels. The first randomization will be relative to the choice of the condition used during the second visit (placebo ou bronchodilatation) and the second one for the rates order (14, 16, 20, 24 steps/min). During each performed exercise, cardiorespiratory and pulmonary parameters will be measured using a portable system.

Interventions

For the visit 2, COPD patients will be randomly assigned a combination of ipratropium/salbutamol or a placebo in a double-blind crossover design. For the visit 3, the other intervention drug will be assigned. The bronchodilation obtained with the medication will allow to determine if the 3-min step test is sensitive by detecting an improvement of exertional dyspnea following bronchodilation.

Sponsors

Université de Montréal
CollaboratorOTHER
Laval University
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
DOUBLE (Subject, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
50 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

* age higher than 50 years old * smoking history ≥ 10 packs/year * post-bronchodilator FEV1 between 30 and 80% of the predicted value and FEV1/FVC lesser than 70% as assessed in previous pulmonary function test (corresponding to GOLD stages II and III)

Exclusion criteria

* respiratory exacerbation within the preceding 6 weeks * asthmatic condition * significant O2 desaturation (SaO2 \< 85%) at rest or during exercise * presence of another pathology that could influence exercise tolerance or may prevent the realization of the step test * subject having a pacemaker

Design outcomes

Primary

MeasureTime frameDescription
Symptom perceptionchange from baseline in Borg Scale at 3 min of exercisePatients will be asked to score their dyspnea and leg discomfort perception using a 10-point Borg scale.

Secondary

MeasureTime frameDescription
Inspiratory capacityChange from baseline at the end of the exercise.Inspiratory capacity will be measured at rest and at the end of the 3-min step test (immediately following the assessment of dyspnea at 3 minutes).
Respiratory pressures and diaphragm EMGChange from baseline at 1, 2 and 3 minutes of exerciseTidal excursion in pleural pressure will be measured using an oesophageal balloon-catheter system that will be positioned using standardized technique (n=40). Gastric and transdiaphragmatic pressures as well as the diaphragm electromyogram will be recorded in the 20 subjects studied at McGill University using a multipair esophageal electrode-balloon catheter.
Cardiac and ventilatory outcomesChange from baseline at 3 minutes of exerciseMetabolic, cardiac and ventilatory parameters will be measured using a metabolic cart. Principal outcomes will be oxygen uptake (VO2), carbon dioxide output (VCO2), ventilation (VE), breathing frequency (BF), tidal volume (Vt) and heart rate (HR).
Maximal oxygen consumptionChange from baseline at 1, 2 and 3 minutes of exerciseExercise capacity will be directly assessed following an incremental cycle exercise test. The exercise capacity was defined as the maximal oxygen consumption (VO2 peak, ml/kg/min) by direct measurements of gas exchanges.
Maximal inspiratory pressure (PImax)Change from baseline after 3 minutes of exerciseThe maximum inspiratory pressure (PImax) will be measured during a sniff manoeuvre. These measurements will allow to construct the ratio of respiratory effort (tidal Pes/PImax) to thoracic displacement (VT/predicted VC), an index of neuromechanical coupling
Pulmonary functionAt baseline and 60-min after the nebulization of either placebo and bronchodilatorPulmonary function will be measured by spirometry and plethysmography in the initial visit. In the subsequent visits, pulmonary function will be evaluated by spirometry before and 60-min after the nebulization of either placebo or bronchodilator.

Countries

Canada

Contacts

Primary ContactFrançois Maltais, M.D
Francois.Maltais@fmed.ulaval.ca418-656-4747
Backup ContactBenoit Borel, Ph.D
benoit.borel@criucpq.ulaval.ca418-656-8711

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026