Cardiac Flow Analysis Applied to Phase Contrast Magnetic Resonance Imaging of the Heart

被引:0
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作者
Kelvin K. L. Wong
Richard M. Kelso
Stephen G. Worthley
Prashanthan Sanders
Jagannath Mazumdar
Derek Abbott
机构
[1] University of Adelaide,Center for Biomedical Engineering and School of Electrical & Electronics Engineering
[2] University of Adelaide,School of Mechanical Engineering
[3] University of Adelaide,Cardiovascular Research Centre and School of Medicine
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关键词
Velocity-encoding; Phase contrast magnetic resonance imaging; Vorticity; Cardiac flow analysis;
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摘要
Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in the heart. The aim of this study is to demonstrate the state of change in swirling blood flow within cardiac chambers and to quantify it for clinical analysis. Velocity fields based on the projection of the three dimensional blood flow onto multiple planes are scanned. The flow patterns can be illustrated using streamlines and vector plots to show the blood dynamical behavior at every cardiac phase. Large-scale vortices can be observed in the heart chambers, and we have developed a technique for characterizing their locations and strength. From our results, we are able to acquire an indication of the changes in blood swirls over one cardiac cycle by using temporal vorticity fields of the cardiac flow. This can improve our understanding of blood dynamics within the heart that may have implications in blood circulation efficiency. The results presented in this paper can establish a set of reference data to compare with unusual flow patterns due to cardiac abnormalities. The calibration of other flow-imaging modalities can also be achieved using this well-established velocity-encoding standard.
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页码:1495 / 1515
页数:20
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