Dual-energy CT-derived microvascular perfused blood volume and lung function and %emphysema in the MESA Lung study

E. Hermann (New York, United States of America), G. Hiura (New York, United States of America), E. Hoffman (Iowa City, United States of America), A. Motahari (Iowa City, United States of America), J. Guo (Iowa City, United States of America), N. Allen (Evanston, United States of America), A. Bertoni (Winston-Salem, United States of America), D. Bluemke (Madison, United States of America), J. Pankow (Minneapolis, United States of America), E. Michos (Baltimore, United States of America), K. Hinckley Stukovsky (Seattle, United States of America), K. Watson (Los Angeles, United States of America), G. Barr (New York, United States of America)

Source: Virtual Congress 2020 – Mechanism or pathways of chronic lung diseases
Session: Mechanism or pathways of chronic lung diseases
Session type: E-poster session
Number: 2061
Disease area: Airway diseases

Congress or journal article abstractE-poster

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E. Hermann (New York, United States of America), G. Hiura (New York, United States of America), E. Hoffman (Iowa City, United States of America), A. Motahari (Iowa City, United States of America), J. Guo (Iowa City, United States of America), N. Allen (Evanston, United States of America), A. Bertoni (Winston-Salem, United States of America), D. Bluemke (Madison, United States of America), J. Pankow (Minneapolis, United States of America), E. Michos (Baltimore, United States of America), K. Hinckley Stukovsky (Seattle, United States of America), K. Watson (Los Angeles, United States of America), G. Barr (New York, United States of America). Dual-energy CT-derived microvascular perfused blood volume and lung function and %emphysema in the MESA Lung study. 2061

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