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8. Physiological Characterization of Preserved Ratio Impaired Spirometry in the CanCOLD Study: Implications for Exertional Dyspnea and Exercise Intolerance.

10. Beyond Spirometry: Linking Wasted Ventilation to Exertional Dyspnea in the Initial Stages of COPD

14. Late Breaking Abstract - Systemic Determinants of Exercise Intolerance in Patients with Fibrosing Interstitial Lung Disease and a Severely Impaired DLCO

18. Systemic Determinants of Exercise Intolerance in Patients With Fibrotic Interstitial Lung Disease and Severely Impaired DLCO

19. Systemic Determinants of Exercise Intolerance in Patients With Fibrotic Interstitial Lung Disease and Severely Impaired DLCO.

20. Dynamic Ventilatory Reserve During Incremental Exercise: Reference Values and Clinical Validation in Chronic Obstructive Pulmonary Disease.

21. Neurophysiological Mechanisms of Exertional Dyspnea in Post-Pulmonary Embolism Syndrome

22. Reply to Jankowich: PRISm: What?s in a Name?

23. V̇/Q̇ Mismatch

29. Impaired Ventilatory Efficiency, Dyspnea, and Exercise Intolerance in Chronic Obstructive Pulmonary Disease: Results from the CanCOLD Study

31. Pulmonary Vascular Volume by Quantitative CT in Dyspneic Smokers with Minor Emphysema.

35. Exertional dyspnoea in patients with mild‐to‐severe chronic obstructive pulmonary disease: neuromechanical mechanisms.

36. Physiological predictors of morbidity and mortality in COPD: the relative importance of reduced inspiratory capacity and inspiratory muscle strength.

40. Deterioration of Nighttime Respiratory Mechanics in COPD

47. Qualitative Components of Dyspnea during Incremental Exercise across the COPD Continuum.

48. Mechanisms of Exertional Dyspnea in Patients with Mild COPD and a Low Resting DLCO.

49. Mechanisms of Exertional Dyspnea in Patients with Mild COPD and a Low Resting DLCO.

50. Reduced exercise tolerance in mild chronic obstructive pulmonary disease: The contribution of combined abnormalities of diffusing capacity for carbon monoxide and ventilatory efficiency.

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