The purpose of this study is to verify the effects of continuous positive airway pressure (CPAP) on exercise capacity of children and adolescents with severe therapy-resistant asthma (STRA). A randomized, controlled, crossover clinical trial will be conducted. We expect the use of CPAP to increase exercise capacity in children and adolescents with STRA.
This project aims to verify the effects of continuous positive airway pressure (CPAP) on exercise capacity of children and adolescents with severe asthma therapy-resistant (STRA). A randomized, controlled, crossover clinical trial will be conducted. Children and adolescents between 6 and 18 years old, with a diagnosis of STRA, will be included in the study. Patients wil be recruited in the São Lucas Hospital (HSL) Asthma Outpatient Clinic of the Pontifical Catholic University of Rio Grande do Sul. Patients who accept to participate in the study will perform a medical consultation according to routine outpatient asthma clinic, anthropometric evaluation and pulmonary function tests. Afterwards, they will be randomized into control and intervention groups. Participants in the intervention group will use noninvasive ventilation (NIV) in CPAP mode with 10cmH2O of positive end-expiratory pressure (PEEP), fraction of inspired oxygen (FiO2) of 0.21, for a period of 40 minutes. Participants in the control group will use NIV (CPAP), with a minimum PEEP of 1cmH20 and a FiO2 of 0.21 also for 40 minutes. Afterwards, patients from both groups will perform a maximum cardiopulmonary exercise test (CPET). A sample size of 18 individuals to be included in the study was estimated. The variables studied will be maximal oxygen consumption and the anaerobic threshold (that measures exercise capacity), distance and time (to measure exercise tolerance), peripheral oxygen saturation, peak expiratory flow and the sensation of dyspnea at the end of the CPET.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
DOUBLE
Enrollment
13
In the first moment, CPAP will be installed, and the researcher will hold a mask in the position in which it is coherent, explaining the method to the patient and allowing their gradual adaptation. Patients will adapt for a few minutes to make sure the mask is consistent with the specifications, so that the patient is comfortable. Participants in the intervention group will start with a PEEP of 1cmH2O that will increase by 2 cmH2O until a PEEP of 10 cmH2O is reached. Therefore, participants in the intervention group will remain with CPAP, PEEP of 10cmH2O, FiO2 0.21, for a period of 40 minutes.
Pontifífia Universidade Católica do Rio Grande do Sul
Porto Alegre, Rio Grande do Sul, Brazil
Exercise capacity
Exercise capacity will be assessed by the VO2max, evaluated during a cardiopulmonary exercise test. Gas capture measurement will be performed by an ergospirometric system using a VO2000 (Medical Graphics Corporation, St. Paul, Minnesota-USA) gas analyzer, which provides information on ventilatory variables every 20s.
Time frame: Immediately after intervention
Exercise tolerance
Exercise tolerance will be assessed by measuring distance in the cardiopulmonary exercise test.
Time frame: Immediately after intervention
Exercise duration
Exercise tolerance will be assessed by measuring time in the cardiopulmonary exercise test.
Time frame: Immediately after intervention
Peripheral oxygen saturation
Peripheral oxygen saturation will be evaluated at rest, every 60s and at the end of the CPET using a portable pulse oximeter (Nonin®, Minneapolis, USA).
Time frame: Immediately after intervention
Peak expiratory flow
Peak expiratory flow will be assessed using a peak flow meter immediately after CPET.
Time frame: Immediately after intervention
Subjective feeling of dyspnea
Subjective feeling of dyspnea will be evaluated using the Modified Borg Scale, which uses a graduation from 0 to 10, at the end of the CPET.
Time frame: Immediately after intervention
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