DocumentCode
1826695
Title
Correcting surface coil intensity inhomogeneity improves quantitative analysis of cardiac magnetic resonance images
Author
Hsu, Li Yueh ; Aletras, Anthony H. ; Arai, Andrew E.
Author_Institution
Dept. of Health & Human Services, Nat. Inst. of Health, Bethesda, MD
fYear
2008
fDate
14-17 May 2008
Firstpage
1425
Lastpage
1428
Abstract
Quantitative analysis of cardiac magnetic resonance (MR) images is important in bringing objectivity in diagnosis of myocardial abnormalities. Prior to quantitative analysis, it is necessary to correct signal intensity inhomogeneity due to the non-uniform surface coil sensitivity profile. We present a method using non-rigid body image warping and polynomial function fitting to correct this intensity bias on imperfectly registered cardiac MR images. The method was validated on normal human MR images and significantly reduced signal variation from 20.0% to 3.9% in regions of normal myocardium. In MR images of acute myocardial infarction in dogs, signal intensity analysis detected edematous myocardium as 35.9% brighter than normal myocardium on T2- weighted images (p=0.002) while control regions of interest on PD-weighted images were uniform within 2.2% (p=NS). The proposed approach effectively corrected surface coil related signal intensity inhomogeneity in imperfect datasets and allowed confident detection of subtle pathophysiological abnormalities.
Keywords
biomedical MRI; cardiology; image registration; image segmentation; medical image processing; patient diagnosis; cardiac magnetic resonance images; image registration; image segmentation; myocardial abnormality; myocardium; nonrigid body image warping; pathophysiological abnormality; patient diagnosis; polynomial function; surface coil intensity inhomogeneity; Coils; Dogs; Humans; Image analysis; Magnetic analysis; Magnetic resonance; Myocardium; Polynomials; Signal analysis; Surface fitting; biomedical image processing; cardiovascular system; magnetic resonance imaging;
fLanguage
English
Publisher
ieee
Conference_Titel
Biomedical Imaging: From Nano to Macro, 2008. ISBI 2008. 5th IEEE International Symposium on
Conference_Location
Paris
Print_ISBN
978-1-4244-2002-5
Electronic_ISBN
978-1-4244-2003-2
Type
conf
DOI
10.1109/ISBI.2008.4541274
Filename
4541274
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