Manuscripts and Publications
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Variability in objective and subjective measures affects baseline values in studies of patients with COPD.. PLoS One. 12(9):e0184606.
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2017. The value of blood cytokines and chemokines in assessing COPD.. Respir Res. 18(1):180.
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2017. Systemic Markers of Inflammation in Smokers With Symptoms Despite Preserved Spirometry in SPIROMICS.. Chest. 155(5):908-917.
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2019. Structural and Functional Features on Quantitative Chest Computed Tomography in the Korean Asian versus the White American Healthy Non-Smokers.. Korean J Radiol. 20(7):1236-1245.
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2019. Soluble receptor for advanced glycation end products (sRAGE) as a biomarker of COPD.. Respir Res. 22(1):127.
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2021. .
2018. Serum amino acid concentrations and clinical outcomes in smokers: SPIROMICS metabolomics study.. Sci Rep. 9(1):11367.
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2019. Safety and Tolerability of Comprehensive Research Bronchoscopy in Chronic Obstructive Pulmonary Disease. Results from the SPIROMICS Bronchoscopy Substudy.. Ann Am Thorac Soc. 16(4):439-446.
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2019. Respiratory Symptoms Items from the COPD Assessment Test Identify Ever-Smokers with Preserved Lung Function at Higher Risk for Poor Respiratory Outcomes. An Analysis of the Subpopulations and Intermediate Outcome Measures in COPD Study Cohort.. Ann Am Thorac Soc. 14(5):636-642.
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2017. Radiographic lung volumes predict progression to COPD in smokers with preserved spirometry in SPIROMICS.. Eur Respir J. 54(4)
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2019. Racial Segregation and Respiratory Outcomes among Urban Black Residents with and at Risk of Chronic Obstructive Pulmonary Disease.. Am J Respir Crit Care Med. 204(5):536-545.
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2021. Predicting severe chronic obstructive pulmonary disease exacerbations using quantitative CT: a retrospective model development and external validation study.. Lancet Digit Health. 5(2):e83-e92.
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2023. Parametric response mapping monitors temporal changes on lung CT scans in the subpopulations and intermediate outcome measures in COPD Study (SPIROMICS).. Acad Radiol. 22(2):186-94.
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2015. Occupational exposures are associated with worse morbidity in patients with chronic obstructive pulmonary disease.. Am J Respir Crit Care Med. 191(5):557-65.
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2015. Occupational Exposures and Computed Tomographic Imaging Characteristics in the SPIROMICS Cohort.. Ann Am Thorac Soc. 15(12):1411-1419.
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2018. NT-proBNP in stable COPD and future exacerbation risk: Analysis of the SPIROMICS cohort.. Respir Med. 140:87-93.
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2018. The matrikine acetyl-proline-glycine-proline and clinical features of COPD: findings from SPIROMICS.. Respir Res. 20(1):254.
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2019. Lung microbiota associations with clinical features of COPD in the SPIROMICS cohort.. NPJ Biofilms Microbiomes. 7(1):14.
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2021. Lower serum IgA is associated with COPD exacerbation risk in SPIROMICS.. PLoS One. 13(4):e0194924.
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2018. Latent traits of lung tissue patterns in former smokers derived by dual channel deep learning in computed tomography images.. Sci Rep. 11(1):4916.
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2021. The influence of social support on COPD outcomes mediated by depression.. PLoS One. 16(3):e0245478.
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2021. Increased airway iron parameters and risk for exacerbation in COPD: an analysis from SPIROMICS.. Sci Rep. 10(1):10562.
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2020. Imaging-based clusters in former smokers of the COPD cohort associate with clinical characteristics: the SubPopulations and intermediate outcome measures in COPD study (SPIROMICS).. Respir Res. 20(1):153.
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2019. Imaging-based clusters in current smokers of the COPD cohort associate with clinical characteristics: the SubPopulations and Intermediate Outcome Measures in COPD Study (SPIROMICS).. Respir Res. 19(1):178.
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2018. Human airway branch variation and chronic obstructive pulmonary disease.. Proc Natl Acad Sci U S A. 115(5):E974-E981.
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