Why the study?
Does CPET interpretation using age-matched controls improve diagnostic accuracy for respiratory limitations in young adults with exertional dyspnea compared to published reference values?
Does CPET interpretation using age-matched controls improve diagnostic accuracy for respiratory limitations in young adults with exertional dyspnea compared to published reference values?
Using age-matched controls for CPET interpretation in young adults increases specificity but decreases sensitivity for respiratory limitations, suggesting CPET may be insensitive for detecting mild disease in this population.
Age-matching may raise CPET specificity but lower sensitivity for respiratory limits in young adults; leaves open optimal reference standards.
BACKGROUND: Cardiopulmonary exercise testing (CPET) is one method to diagnose unexplained dyspnea in young adults, yet few normal reference values exist in this population. This study evaluated interpretation of maximal CPET in a young adult cohort with known pulmonary disorders using published reference values compared to age-matched normal controls. METHODS: A control population of 69 healthy military volunteers with normal chest radiographs, pulmonary function testing, and bronchoprovocation testing were compared to 105 patients with exertional dyspnea. Both groups underwent a standardized evaluation including CPET on a graded exercise treadmill to maximal exercise with expired gas analysis. RESULTS: Measurements from CPET in the dyspnea group were interpreted using published reference values compared to control population results (mean +/- 1.65 x SD). Statistical comparison of predicted normals (reference vs. control) of maximal oxygen consumption (> 83% vs. 82%), ventilatory anaerobic threshold (> 40% vs. 53%), respiratory rate (< 60 vs. 56 breaths/min), tidal volume to inspiratory capacity (< 80% vs. 111%), ventilatory equivalent for carbon dioxide production (< 40 vs. 38), and maximal voluntary ventilation minus minute ventilation (> 11 vs. -1 L/min) was performed. The overall specificity for tidal volume to inspiratory capacity improved using age-matched controls but sensitivity was decreased. Other parameters were not significantly different. CONCLUSIONS: The use of age-matched controls for CPET results in an increase in specificity and decrease in sensitivity for respiratory limitations to exercise, when compared to reference values. The study findings suggest that CPET may be insensitive in detecting mild disease in young healthy adults.
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Sill et al. (2009) studied this question.
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