DocumentCode
2424493
Title
Quantification of the geometric accuracy of MRI in tissue: a new approach using MRI itself
Author
Sumanaweera, Thilaka S. ; Napel, Sandy ; Glover, Gary H. ; Song, Sam M.
Author_Institution
Dept. of Diagnostic Radiol., Stanford Univ., CA, USA
fYear
1993
fDate
31 Oct-6 Nov 1993
Firstpage
1789
Abstract
The authors have developed a new way to quantify the extent of the geometric distortion due to magnetic field inhomogeneities in MR images to subpixel accuracy and to test the effectiveness of any method used to correct this distortion. This method does not require an external standard such as CT nor does it require that the geometry of the imaging objects be known a priori. Therefore, it can be used to test the effectiveness of MR spatial distortion correction methods in tissue. The authors have shown that the geometric accuracy along the phase-encoding directions of MR images is uncorrupted. Thus measurements along the phase-encoding directions are used to quantify the accuracy of the measurements along the frequency encoding directions. The authors have quantified the distortion in a tissue phantom and found the largest error to be approximately 2.8 pixels (1.8 mm) for B0=1.5 T, G=3.13 mT/m and FOV=160×160×70.7 mm3. The authors also found that their previously published correction technique reduced the largest error to 0.3 pixels (μ=0.02 and σ=0.07 pixels)
Keywords
biomedical NMR; geometry; 1.5 T; MRI geometric accuracy quantification method; frequency encoding directions; geometric distortion; magnetic field inhomogeneities; magnetic resonance imaging; measurements accuracy; medical diagnostic imaging; phase-encoding directions; spatial distortion correction; subpixel accuracy; tissue phantom distortion; Computed tomography; Distortion measurement; Encoding; Error correction; Frequency measurement; Geometry; Imaging phantoms; Magnetic resonance imaging; Phase measurement; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium and Medical Imaging Conference, 1993., 1993 IEEE Conference Record.
Conference_Location
San Francisco, CA
Print_ISBN
0-7803-1487-5
Type
conf
DOI
10.1109/NSSMIC.1993.373600
Filename
373600
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