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Assessment of regional emphysema, air-trapping and Xenon-ventilation using dual-energy computed tomography in chronic obstructive pulmonary disease patients

Authors
 Lee, Sang Min  ;  Seo, Joon Beom  ;  Hwang, Hye Jeon  ;  Kim, Namkug  ;  Oh, Sang Young  ;  Lee, Jae Seung  ;  Lee, Sei Won  ;  Oh, Yeon-Mok  ;  Kim, Tae Hoon 
Citation
 European Radiology, Vol.27(7) : 2818-2827, 2017-07 
Journal Title
EUROPEAN RADIOLOGY
ISSN
 0938-7994 
Issue Date
2017-07
Keywords
Chronic obstructive pulmonary disease ; Air trapping ; Xenon ; Ventilation ; Dual-energy CT
Abstract
To compare the parenchymal attenuation change between inspiration/expiration CTs with dynamic ventilation change between xenon wash-in (WI) inspiration and wash-out (WO) expiration CTs. 52 prospectively enrolled COPD patients underwent xenon ventilation dual-energy CT during WI and WO periods and pulmonary function tests (PFTs). The parenchymal attenuation parameters (emphysema index (EI), gas-trapping index (GTI) and air-trapping index (ATI)) and xenon ventilation parameters (xenon in WI (Xe-WI), xenon in WO (Xe-WO) and xenon dynamic (Xe-Dyna)) of whole lung and three divided areas (emphysema, hyperinflation and normal) were calculated on virtual non-contrast images and ventilation images. Pearson correlation, linear regression analysis and one-way ANOVA were performed. EI, GTI and ATI showed a significant correlation with Xe-WI, Xe-WO and Xe-Dyna (EI R = -.744, -.562, -.737; GTI R = -.621, -.442, -.629; ATI R = -.600, -.421, -.610, respectively, p < 0.01). All CT parameters showed significant correlation with PFTs except forced vital capacity (FVC). There was a significant difference in GTI, ATI and Xe-Dyna in each lung area (p < 0.01). The parenchymal attenuation change between inspiration/expiration CTs and xenon dynamic change between xenon WI- and WO-CTs correlate significantly. There are alterations in the dynamics of xenon ventilation between areas of emphysema. aEuro cent The xenon ventilation change correlates with the parenchymal attenuation change. aEuro cent The xenon ventilation change shows the difference between three lung areas. aEuro cent The combination of attenuation and xenon can predict more accurate PFTs.
DOI
10.1007/s00330-016-4657-z
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Radiology (영상의학교실) > 1. Journal Papers
Yonsei Authors
Kim, Tae Hoon(김태훈) ORCID logo https://orcid.org/0000-0003-3598-2529
Lee, Sang Min(이상민)
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/195693
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