Cardiac real-time imaging using SENSE

Sensitivity encoding is used to improve the performance of real‐time MRI. The encoding efficiency of single‐shot and segmented echo‐planar imaging is tripled by means of a 6‐element receiver coil array. The feasibility of this approach is verified for double oblique cardiac real‐time imaging of huma...

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Published inMagnetic resonance in medicine Vol. 43; no. 2; pp. 177 - 184
Main Authors Weiger, Markus, Pruessmann, Klaas P., Boesiger, Peter
Format Journal Article
LanguageEnglish
Published New York John Wiley & Sons, Inc 01.02.2000
Williams & Wilkins
Subjects
Online AccessGet full text
ISSN0740-3194
1522-2594
DOI10.1002/(SICI)1522-2594(200002)43:2<177::AID-MRM3>3.0.CO;2-1

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Abstract Sensitivity encoding is used to improve the performance of real‐time MRI. The encoding efficiency of single‐shot and segmented echo‐planar imaging is tripled by means of a 6‐element receiver coil array. The feasibility of this approach is verified for double oblique cardiac real‐time imaging of human subjects at rest as well as under physiological stress. Sample images are presented with scan times per image down to 13 msec at a spatial resolution of 4.1 mm, and 27 msec at a resolution of 2.6 mm. Moreover, multiple slice real‐time imaging is demonstrated at a rate of 38 double‐frames per second. Magn Reson Med 43:177–184, 2000. © 2000 Wiley‐Liss, Inc.
AbstractList Sensitivity encoding is used to improve the performance of real‐time MRI. The encoding efficiency of single‐shot and segmented echo‐planar imaging is tripled by means of a 6‐element receiver coil array. The feasibility of this approach is verified for double oblique cardiac real‐time imaging of human subjects at rest as well as under physiological stress. Sample images are presented with scan times per image down to 13 msec at a spatial resolution of 4.1 mm, and 27 msec at a resolution of 2.6 mm. Moreover, multiple slice real‐time imaging is demonstrated at a rate of 38 double‐frames per second. Magn Reson Med 43:177–184, 2000. © 2000 Wiley‐Liss, Inc.
Author Boesiger, Peter
Weiger, Markus
Pruessmann, Klaas P.
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Issue 2
Keywords Human
Image quality
Improvement
Sensitivity analysis
Device
Myocardium
Medical imagery
Feasibility
Circulatory system
Echo planar imaging
Nuclear magnetic resonance imaging
Real time system
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– reference: Davis CP, McKinnon GC, Debatin JF, Duewell S, von Schulthess GK. Single-shot versus interleaved echo-planar MR imaging: application to visualization of cardiac valve leaflets. J Magn Reson Imaging 1995; 5:107-112.
– reference: Sodickson DK, Manning WJ. Simultaneous acquisition of spatial harmonics (SMASH): ultra-fast imaging with radiofrequency coil arrays. Magn Reson Med 1997; 38:591-603.
– reference: Pruessmann KP, Weiger M, Scheidegger MB, Boesiger P. SENSE: Sensitivity encoding for fast MRI. Magn Reson Med 1999; 42:952-962.
– reference: Mansfield P. Multi-planar image formation using NMR spin echoes. J Phys C 1977; 10:155-158.
– reference: Mc Veigh ER. MRI of myocardial function: motion tracking techniques. Magn Reson Imaging 1996; 14:137-150.
– reference: Chapman B, Turner R, Ordidge RJ, Doyle M, Cawley M, Coxon R, Glover P, Mansfield P. Real-time movie imaging from a single cardiac cycle by NMR. Magn Reson Med 1987; 5:246-254.
– reference: Hutchinson M, Raff U. Fast MRI data acquisition using multiple detectors. MagnReson Med 1988; 6:87-91.
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Snippet Sensitivity encoding is used to improve the performance of real‐time MRI. The encoding efficiency of single‐shot and segmented echo‐planar imaging is tripled...
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SubjectTerms Biological and medical sciences
cardiac imaging
Cardiovascular system
Investigative techniques, diagnostic techniques (general aspects)
Medical sciences
MRI
Radiodiagnosis. Nmr imagery. Nmr spectrometry
real-time imaging
SENSE
sensitivity encoding
Title Cardiac real-time imaging using SENSE
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