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Updated: Aug 5, 2026

Dual Test Gas Pulmonary Diffusing Capacity Measurement During Exercise in Humans Using the Single-Breath Method
Published on: February 2, 2024
Contrasting dynamic and peak exercise inspiratory constraints: Implications for dyspnoea and exercise tolerance in
Pedro Dal Lago1, Danilo C Berton2, Abed Hijleh3
1Programa de Pós-Graduação em Ciências da Reabilitação e Programa de Pós-Graduação em Ciências da Saúde, Universidade Federal de Ciências da Saúde de Porto Alegre, Porto Alegre, Rio Grande do Sul, Brazil; Respiratory Investigation Unit, Division of Respirology, Department of Medicine, Faculty of Health Sciences, Queen's University, Kingston, Ontario, Canada.
Background:
Exertional dyspnoea is linked to inspiratory constraints to tidal volume expansion in chronic obstructive pulmonary disease (COPD). Dynamic assessment of these constraints via serial inspiratory capacity (IC) maneuvers across incremental cardiopulmonary exercise testing (CPET) might provide information regarding dyspnoea severity and exercise intolerance beyond the conventional peak IC-only approach.
Methods:
Pulmonary function tests and cycle ergometer CPET in 360 patients with COPD of varied severity. In addition to using peak-exercise cutoffs for critically high inspiratory constraints (CIC), a novel AI-based algorithm quantified dyspnoea and dynamic inspiratory constraints throughout progressively higher exercise intensities.
Results:
Among the CIC variables, end-inspiratory lung volume (EILV)/total lung capacity (TLC) ≥ 0.9 correlated best with dyspnoea and exercise intolerance. CIC and dynamic constraints (≤ 25th centile relative to sex- and age-adjusted norms) disagreed significantly: whereas ∼ a third of patients without CIC exhibited inspiratory constraints, ∼ a fifth of those with CIC did not (P < 0.05). Dynamic constraints, regardless of CIC, were significantly associated with abnormalities in submaximal mechanical-ventilatory responses, higher operating lung volumes, higher dyspnoea scores, and lower exercise tolerance. Of note, the prevalence of "high" dyspnoea-work rate and -ventilation (≥ 75% centile) was more than fourfold higher in patients with dynamic constraints, regardless of CIC (P < 0.05).
Conclusions:
Clinicians interested in assessing the presence and severity of dyspnoea attributable to ventilatory responses to exercise should consider serial IC measurements in patients with COPD. Novel AI-based approaches to quantify these dynamic abnormalities are poised to increase the sensitivity of this analytical approach.
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