COPD

Select peer-reviewed papers:
COPD & VIDA’s quantitative CT (QCT) analysis.

1.
Woodruff, P. G. et al. Clinical Significance of Symptoms in Smokers with Preserved Pulmonary Function. New England Journal of Medicine 374, 1811–1821 (2016).
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Wang, J. M., Ram, S., Labaki, W. W., Han, M. K. & Galbán, C. J. CT-Based Commercial Software Applications: Improving Patient Care Through Accurate COPD Subtyping. Int J Chron Obstruct Pulmon Dis 17, 919–930 (2022).
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Motahari, A. et al. Repeatability of Pulmonary Quantitative CT Measurements in COPD. Am J Respir Crit Care Med rccm.202209-1698PP (2023) http://doi.org/10.1164/rccm.202209-1698PP.
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Ritchie, A. I. et al. Structural Predictors of Lung Function Decline in Young Smokers with Normal Spirometry. Am J Respir Crit Care Med (2024) http://doi.org/10.1164/rccm.202307-1203OC.
1.
Sharma, M., Kirby, M., McCormack, D. G. & Parraga, G. Machine Learning and CT Texture Features in Ex-smokers with no CT Evidence of Emphysema and Mildly Abnormal Diffusing Capacity. Academic Radiology 0, (2023).
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Armstrong, H. F. et al. Lung function, percent emphysema, and QT duration: The Multi-Ethnic Study of Atherosclerosis (MESA) lung study. Respir Med 123, 1–7 (2017).
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Beiko, T. et al. Serum Proteins Associated with Emphysema Progression in Severe Alpha-1 Antitrypsin Deficiency. Chronic Obstr Pulm Dis 4, 204–216 (2017).
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Choi, S. et al. Differentiation of quantitative CT imaging phenotypes in asthma versus COPD. BMJ Open Respiratory Research 4, e000252 (2017).
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Cosentino, J. et al. Analysis of Asthma-Chronic Obstructive Pulmonary Disease Overlap Syndrome Defined on the Basis of Bronchodilator Response and Degree of Emphysema. Ann Am Thorac Soc 13, 1483–1489 (2016).
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Smith, B. M. et al. Human airway branch variation and chronic obstructive pulmonary disease. Proceedings of the National Academy of Sciences 115, E974–E981 (2018).
1.
Washko, G. R., Coxson, H. O., O'Donnell, D. E. & Aaron, S. D. CT imaging of chronic obstructive pulmonary disease: insights, disappointments, and promise. The Lancet Respiratory Medicine 5, 903–908 (2017).
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Gompelmann, D. et al. The minimal important difference for target lobe volume reduction after endoscopic valve therapy. Int J Chron Obstruct Pulmon Dis 13, 465–472 (2018).
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Yablonskiy, D. A. Air Trapping - Insights from CT and In Vivo Lung Morphometry with Hyperpolarized 3He MRI. American Thoracic Society International Conference Meetings Abstracts American Thoracic Society International Conference Meetings Abstracts.
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Lo Cascio, C. M. et al. Percent Emphysema and Daily Motor Activity Levels in the General Population. Chest 151, 1039–1050 (2017).
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Oelsner, E. C. et al. Association between emphysema-like lung on cardiac computed tomography and mortality in persons without airflow obstruction: a cohort study. Ann Intern Med 161, 863–873 (2014).
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Smith, B. M. et al. Not all measures of hyperinflation are created equal: lung structure and clinical correlates of gas trapping and hyperexpansion in COPD: the Multi-Ethnic Study of Atherosclerosis (MESA) COPD Study. Chest 145, 1305–1315 (2014).
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Martinez, C. H. et al. Age and Small Airway Imaging Abnormalities in Subjects with and without Airflow Obstruction in SPIROMICS. Am J Respir Crit Care Med 195, 464–472 (2017).
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Newell, J. D., Sieren, J. & Hoffman, E. A. Development of quantitative computed tomography lung protocols. J Thorac Imaging 28, 266–271 (2013).
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Han, M. K. et al. Prevalence and clinical correlates of bronchoreversibility in severe emphysema. Eur Respir J 35, 1048–1056 (2010).
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Martinez, F. J. et al. Sex differences in severe pulmonary emphysema. AM.REV.RESPIR.DIS. 176, 243–252 (2007).
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Burkart, K. M. et al. APOM and High-Density Lipoprotein are associated with Lung Function and Percent Emphysema. Eur Respir J 43, 1003–1017 (2014).
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Powell, R. et al. Genetic ancestry and the relationship of cigarette smoking to lung function and per cent emphysema in four race/ethnic groups: a cross-sectional study. Thorax 68, 634–642 (2013).
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Barr, R. G. et al. Percent Emphysema, Airflow Obstruction, and Impaired Left Ventricular Filling. N Engl J Med 362, 217–227 (2010).
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Krachman, S. L. et al. Effect of Emphysema Severity on the Apnea-Hypopnea Index in Smokers with Obstructive Sleep Apnea. Ann Am Thorac Soc 13, 1129–1135 (2016).
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Xu, Y., Sonka, M., McLennan, G., Guo, J. & Hoffman, E. A. MDCT-based 3-D texture classification of emphysema and early smoking related lung pathologies. IEEE Trans Med Imaging 25, 464–475 (2006).
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Zach, J. A. et al. Quantitative computed tomography of the lungs and airways in healthy nonsmoking adults. Invest Radiol 47, 596–602 (2012).
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Sieren, J. P. et al. Reference standard and statistical model for intersite and temporal comparisons of CT attenuation in a multicenter quantitative lung study. Med Phys 39, 5757–5767 (2012).
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Putman, R. K. et al. Association Between Interstitial Lung Abnormalities and All-Cause Mortality. JAMA 315, 672–681 (2016).
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Iyer, K. S., Grout, R. W., Zamba, G. K. & Hoffman, E. A. Repeatability and Sample Size Assessment Associated with Computed Tomography-Based Lung Density Metrics. Chronic Obstr Pulm Dis 1, 97–104 (2014).
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Chen-Mayer, H. H. et al. Standardizing CT lung density measure across scanner manufacturers. Med Phys 44, 974–985 (2017).
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Moslemi, A. et al. Quantitative CT Lung Imaging and Machine Learning Improves Prediction of Emergency Room Visits and Hospitalizations in COPD. Acad Radiol S1076-6332(22)00311–7 (2022) http://doi.org/10.1016/j.acra.2022.05.009.
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Makimoto, K. et al. Comparison of Feature Selection Methods and Machine Learning Classifiers for Predicting Chronic Obstructive Pulmonary Disease Using Texture-Based CT Lung Radiomic Features. Acad Radiol S1076-6332(22)00412–3 (2022) http://doi.org/10.1016/j.acra.2022.07.016.