Related Experiment Video
Updated: Mar 1, 2026

Home-Based Prescribed Pulmonary Exercise in Patients with Stable Chronic Obstructive Pulmonary Disease
Published on: August 24, 2019
Acute Effects of Positive Expiratory Pressure on Breathing Pattern and Chest Wall Volumes During Cycle Exercise in
Lailane S Silva1,2, Guilherme A F Fregonezi1,2, Hugo L A Pereira3
1Ms. Silva, Dr. Fregonezi, Ms. Fagundes, da Fonseca, Dr. Resqueti, and Ms. Lima are affiliated with Departamento de Fisioterapia, PneumoCardioVascular Lab/HUOL, Hospital Universitário Onofre Lopes, Universidade Federal do Rio Grande do Norte, Natal, Brazil.
Background:
Patients with COPD experience air flow limitation, reduced expiratory capacity, and dynamic hyperinflation (DH), which causes dyspnea and decreased exercise tolerance. Expiratory positive airway pressure (EPAP) is a potential intervention that can reduce DH and improve respiratory muscle efficiency, but its impact on exercise tolerance remains unclear. The aim was to evaluate the acute effects of EPAP during exercise on the respiratory pattern, chest wall volumes, thoracoabdominal asynchrony (TAA), and DH in individuals with COPD using optoelectronic plethysmography.
Methods:
This is a cross-sectional, multi-center study in which the participants were divided in two moments EPAP versus SHAM doing exercise protocols on a cycle ergometer. The protocol consisted of two conditions (a) EPAP-2 min of calm breathing followed by cycling at 80% of maximum load with a 7.5 cm H2O EPAP mask until exhaustion; and (b) SHAM-the same procedure without EPAP. Effects of EPAP on chest wall volumes, breathing pattern, index of respiratory muscles shortening velocity, the TAA, and paradoxical movements were analyzed. Distribution of the data were tested using Shapiro-Wilk. The Wilcoxon test was used for between-group assessments, and two-way ANOVA or Friedman test was used to compare both groups and phases the protocol. A significance level of P < .05 was used.
Results:
In COPD subjects exercising at 80% of maximum load, both EPAP and SHAM increased chest wall volumes, with EPAP showing greater recovery values and higher abdominal volume (0.74 ± 0.4 L vs 0.58 ± 0.2 L). EPAP maintained higher TI, TE, and Ttot at 50%Tlim (Time to Limitation) and Tlim but had lower minute ventilation (Tlim 29.6 ± 11.7 vs 34.7 ± 13.1 L/min, P < .001) and reduced exercise tolerance (P = .001) with greater dyspnea (P = .001). It also increased end-inspiratory chest wall volume at 50% Tlim and recovery (P < .001), sustained rib cage expansion, and reduced diaphragm shortening velocity during exercise. Phase angle differences indicated more TAA with EPAP at Tlim (P = .002), although paradoxical movements increased similarly in both groups during exercise.
Conclusions:
The use of EPAP during exercise in subjects with COPD tended to increase dyspnea, increase TAA, and reduce exercise tolerance without significant improvement in DH.
More Related Videos
08:44Author Spotlight: Integrating Alveolar-Capillary Reserve Measurements in Exercise Adaptation and Therapeutic Strategies
Published on: February 2, 2024
07:09Assessment of Pulmonary Capillary Blood Volume, Membrane Diffusing Capacity, and Intrapulmonary Arteriovenous Anastomoses During Exercise
Published on: February 20, 2017
Related Concept Videos
Chest Physiotherapy
Purpose
CPT is primarily used for patients with excessive bronchial secretions who have difficulty clearing...
Pulmonary Cycle: Exhalation
Chronic Obstructive Pulmonary Disease
Smoking is a primary risk factor for COPD, with over 80% of patients having a history of it. Patients typically experience progressive dyspnea or labored breathing, frequent coughing, and recurrent pulmonary infections. Many eventually succumb to respiratory failure, characterized by...
Hyperpnea and Hyperventilation
Chronic Obstructive Pulmonary Disease-I: Introduction
Factors Affecting Pulmonary Ventilation
Alveolar Surface Tension
The alveolar fluid lines the luminal surface of the alveoli and exerts a force called surface tension. This force is caused by the polar water molecules in the liquid being more strongly attracted to each...