Automated endocardial boundary detection of the left ventricle using dynamic directional gradient vector flow snakes
89 p.
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2010
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sg-ntu-dr.10356-391012023-07-04T16:03:06Z Automated endocardial boundary detection of the left ventricle using dynamic directional gradient vector flow snakes Kirthika. Foo Say Wei School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering 89 p. Echocardiogram is a test that uses ultrasound waves to create the moving picture of the heart. The two dimensional (2-D) echocardiographic images obtained from this procedure are used in determining the endocardial boundary of left ventricle (LV) of the heart for one cardiac cycle, thus obtaining a quantitative interpretation of the LV contraction dynamics. Automated tracking of this endocardial boundary from the echocardiographic images is a very useful step in diagnosing the abnormality of the heart. Master of Science (Signal Processing) 2010-05-21T04:43:28Z 2010-05-21T04:43:28Z 2006 2006 Thesis http://hdl.handle.net/10356/39101 application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering Kirthika. Automated endocardial boundary detection of the left ventricle using dynamic directional gradient vector flow snakes |
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89 p. |
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Foo Say Wei |
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Foo Say Wei Kirthika. |
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Theses and Dissertations |
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Kirthika. |
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Kirthika. |
title |
Automated endocardial boundary detection of the left ventricle using dynamic directional gradient vector flow snakes |
title_short |
Automated endocardial boundary detection of the left ventricle using dynamic directional gradient vector flow snakes |
title_full |
Automated endocardial boundary detection of the left ventricle using dynamic directional gradient vector flow snakes |
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Automated endocardial boundary detection of the left ventricle using dynamic directional gradient vector flow snakes |
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Automated endocardial boundary detection of the left ventricle using dynamic directional gradient vector flow snakes |
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automated endocardial boundary detection of the left ventricle using dynamic directional gradient vector flow snakes |
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2010 |
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http://hdl.handle.net/10356/39101 |
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1772828478627905536 |