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Academic Radiology|February 23, 2019
Reprint of: Voxel-Wise Longitudinal Parametric Response Mapping Analysis of Chest Computed Tomography in SmokersWassim W Labaki, Tian Gu, Susan Murray, et al.Academic Radiology|July 30, 2018
Voxel-Wise Longitudinal Parametric Response Mapping Analysis of Chest Computed Tomography in SmokersWassim W Labaki, Tian Gu, Susan Murray, et al.Respiratory Research|December 4, 2019
Relationship between diffusion capacity and small airway abnormality in COPDGeneRachel N Criner, Charles R Hatt, Craig J Galbán, et al.Academic Radiology|December 20, 2016
The Objective Identification and Quantification of Interstitial Lung Abnormalities in SmokersSamuel Y Ash, Rola Harmouche, James C Ross, et al.Radiology|December 11, 2012
Interobserver variability in the CT assessment of honeycombing in the lungsTakeyuki Watadani, Fumikazu Sakai, Takeshi Johkoh, et al.European Radiology Experimental|November 3, 2020
Differentiating combined pulmonary fibrosis and emphysema from pure emphysema: utility of late gadolinium-enhanced MRIHannah Fleming, Simon M Clifford, Aoife Haughey, et al.Radiology|September 2, 2020
Expanding Applications of Pulmonary MRI in the Clinical Evaluation of Lung Disorders: Fleischner Society Position PaperHiroto Hatabu, Yoshiharu Ohno, Warren B Gefter, et al.Radiology|February 5, 2020
Five-year Progression of Emphysema and Air Trapping at CT in Smokers with and Those without Chronic Obstructive Pulmonary Disease: Results from the COPDGene StudyEsther Pompe, Matthew Strand, Eva M van Rikxoort, et al.Respiratory Research|February 28, 2024
Local heterogeneity of normal lung parenchyma and small airways disease are associated with COPD severity and progressionAlexander J Bell, Ravi Pal, Wassim W Labaki, et al.Medrxiv : the Preprint Server for Health Sciences|June 19, 2023
Quantitative CT of Normal Lung Parenchyma and Small Airways Disease Topologies are Associated With COPD Severity and ProgressionAlexander J Bell, Ravi Pal, Wassim W Labaki, et al.Pageof 35