Quantitative Follow-Up Assessment of Patients with Interstitial Lung Disease by 3D-Curved High-Resolution CT Imaging Parallel to the Chest Wall.
computer-aided diagnosis
interstitial lung disease
pulmonary function tests
quantitative imaging
Journal
Nagoya journal of medical science
ISSN: 2186-3326
Titre abrégé: Nagoya J Med Sci
Pays: Japan
ID NLM: 0412011
Informations de publication
Date de publication:
Feb 2019
Feb 2019
Historique:
entrez:
10
4
2019
pubmed:
10
4
2019
medline:
28
7
2019
Statut:
ppublish
Résumé
We evaluated the progression of interstitial lung disease (ILD) by three-dimensional curved high-resolution computed tomography (3D-cHRCT) at a constant depth from the chest wall and compare the results to pulmonary function test (PFT) results on a follow-up assessment. We reviewed the patients with ILD who underwent HRCT and concurrent PFTs at least twice from April 2008 to December 2014. Forty-five patients with ILD were enrolled. 3D-cHRCT images of the lung at various depths from the chest wall were reconstructed, and total area (TA), high-attenuation area (HAA) >-500 HU, and %HAA ([HAA/TA] × 100) were calculated. The TA, HAA, and %HAA ratios (follow-up to baseline) were assessed for use in the diagnosis of physiologically progressive ILD (defined as; forced vital capacity [FVC] ratio <0.9 or %diffusing capacity of the lung for carbon monoxide [%DLCO] ratio <0.85 [follow-up to baseline]). Of all ratios obtained from 3D-cHRCT images at 5-30mm depths, the %HAA ratio at 20-mm had the largest area under the receiver operating characteristic curve (0.815, 95 % confidence interval 0.677-0.953). By univariate logistic regression analysis, TA, HAA, and %HAA ratios at 20-mm showed significant correlations with physiologically progressive ILD. 3D-cHRCT imaging performed in parallel with the chest wall offers novel quantitative parameters that are useful for following ILD.
Identifiants
pubmed: 30962654
doi: 10.18999/nagjms.81.1.41
pmc: PMC6433631
doi:
Types de publication
Journal Article
Langues
eng
Pagination
41-53Déclaration de conflit d'intérêts
TI, YL and KN are employees of Fujifilm corporation. However, Fujifilm corporation had no control over the interpretation, writing, or publication of this work.
Références
Am J Respir Crit Care Med. 1999 Aug;160(2):648-54
pubmed: 10430742
Am J Respir Crit Care Med. 2002 Jan 15;165(2):277-304
pubmed: 11790668
Proc Am Thorac Soc. 2006 Jun;3(4):315-21
pubmed: 16738195
Radiol Med. 2007 Dec;112(8):1160-72
pubmed: 18193399
Eur J Radiol. 2010 Apr;74(1):142-6
pubmed: 19324507
Am J Respir Crit Care Med. 2009 Sep 1;180(5):407-14
pubmed: 19542480
J Thorac Imaging. 2009 Aug;24(3):216-22
pubmed: 19704326
Clin Radiol. 1991 Apr;43(4):238-42
pubmed: 2025994
Am J Respir Crit Care Med. 2011 Feb 15;183(4):431-40
pubmed: 20935110
Clin Exp Rheumatol. 2010 Sep-Oct;28(5 Suppl 62):S26-35
pubmed: 21050542
J Comput Assist Tomogr. 2011 Mar-Apr;35(2):266-71
pubmed: 21412102
Am J Respir Crit Care Med. 2011 Mar 15;183(6):788-824
pubmed: 21471066
Eur J Radiol. 2014 Jan;83(1):32-8
pubmed: 22465123
Eur Radiol. 2013 Mar;23(3):692-701
pubmed: 22918563
Radiology. 2013 Mar;266(3):936-44
pubmed: 23220902
Respirology. 2013 Jul;18(5):820-6
pubmed: 23489318
J Thorac Imaging. 2013 Sep;28(5):298-307
pubmed: 23966094
Am J Respir Crit Care Med. 2013 Sep 15;188(6):733-48
pubmed: 24032382
J Comput Assist Tomogr. 2015 Mar-Apr;39(2):153-9
pubmed: 25474146
BMJ. 2015 May 07;350:h2072
pubmed: 25952322
Eur Respir J. 2015 Oct;46(4):1113-30
pubmed: 26424523
Radiographics. 2015 Nov-Dec;35(7):1849-71
pubmed: 26452110
Respirology. 2016 Jul;21(5):810-20
pubmed: 27123874
PLoS One. 2017 Sep 28;12(9):e0185532
pubmed: 28957390
Clin Radiol. 1982 Jul;33(4):379-87
pubmed: 7083738
Am J Respir Crit Care Med. 1998 Apr;157(4 Pt 1):1063-72
pubmed: 9563720