Manuscripts and Publications
Filters: Author is Couper, David J [Clear All Filters]
A blood and bronchoalveolar lavage protein signature of rapid FEV decline in smoking-associated COPD.. Sci Rep. 13(1):8228.
.
2023. Changes in Lung Volumes with Spirometric Disease Progression in COPD.. Chronic Obstr Pulm Dis. 10(3):270-285.
.
2023. Repeatability of Pulmonary Quantitative Computed Tomography Measurements in Chronic Obstructive Pulmonary Disease.. Am J Respir Crit Care Med. 208(6):657-665.
.
2023. Characterizing COPD Symptom Variability in the Stable State Utilizing the Evaluating Respiratory Symptoms in COPD Instrument.. Chronic Obstr Pulm Dis. 9(2):195-208.
.
2022. Forced Expiratory Flow at 25%-75% Links COPD Physiology to Emphysema and Disease Severity in the SPIROMICS Cohort.. Chronic Obstr Pulm Dis. 9(2):111-121.
.
2022. Lung Microbiota and Metabolites Collectively Associate with Clinical Outcomes in Milder Stage Chronic Obstructive Pulmonary Disease.. Am J Respir Crit Care Med. 206(4):427-439.
.
2022. Reversible Airflow Obstruction Predicts Future Chronic Obstructive Pulmonary Disease Development in the SPIROMICS Cohort: An Observational Cohort Study.. Am J Respir Crit Care Med. 206(5):554-562.
.
2022. Age-Dependent Associations Between 25-Hydroxy Vitamin D Levels and COPD Symptoms: Analysis of SPIROMICS.. Chronic Obstr Pulm Dis. 8(2):277-291.
.
2021. Association of plasma mitochondrial DNA with COPD severity and progression in the SPIROMICS cohort.. Respir Res. 22(1):126.
.
2021. Contribution of Individual and Neighborhood Factors to Racial Disparities in Respiratory Outcomes.. Am J Respir Crit Care Med. 203(8):987-997.
.
2021. Genetic and non-genetic factors affecting the expression of COVID-19-relevant genes in the large airway epithelium.. Genome Med. 13(1):66.
.
2021. Lung microbiota associations with clinical features of COPD in the SPIROMICS cohort.. NPJ Biofilms Microbiomes. 7(1):14.
.
2021. Association of Dysanapsis With Chronic Obstructive Pulmonary Disease Among Older Adults.. JAMA. 323(22):2268-2280.
.
2020. .
2020. A Genetic Risk Score Associated with Chronic Obstructive Pulmonary Disease Susceptibility and Lung Structure on Computed Tomography.. Am J Respir Crit Care Med. 200(6):721-731.
.
2019. The matrikine acetyl-proline-glycine-proline and clinical features of COPD: findings from SPIROMICS.. Respir Res. 20(1):254.
.
2019. Radiographic lung volumes predict progression to COPD in smokers with preserved spirometry in SPIROMICS.. Eur Respir J. 54(4)
.
2019. .
2019. .
2019. Alveolar eosinophilia in current smokers with chronic obstructive pulmonary disease in the SPIROMICS cohort.. J Allergy Clin Immunol. 141(1):429-432.
.
2018. Human airway branch variation and chronic obstructive pulmonary disease.. Proc Natl Acad Sci U S A. 115(5):E974-E981.
.
2018. NT-proBNP in stable COPD and future exacerbation risk: Analysis of the SPIROMICS cohort.. Respir Med. 140:87-93.
.
2018. Association of sputum and blood eosinophil concentrations with clinical measures of COPD severity: an analysis of the SPIROMICS cohort.. Lancet Respir Med. 5(12):956-967.
.
2017. Frequency of exacerbations in patients with chronic obstructive pulmonary disease: an analysis of the SPIROMICS cohort.. Lancet Respir Med. 5(8):619-626.
.
2017. Variability in objective and subjective measures affects baseline values in studies of patients with COPD.. PLoS One. 12(9):e0184606.
.
2017.