Two-Dimensional Deformation Analysis of Human Left Ventricle during Ejection Period Using Magnetic Resonance Tagging Technique
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概要
- 論文の詳細を見る
The two-dimensional deformations of human left ventricles(Subjects were four normal volunteers and a patient with a hypertrophic cardiomyopathy)during the ejection period were investigated using the magnetic resonance tagging technique. The displacements were measured by tracking the intersections of tagged stripes formed within the left ventricular myocardial wall, and the strains were calculated from the changes of segment lengths of triangles defined by three adjoining intersections. It was recognized from the results for the normal volunteers that the magnitudes of minimum principal strains were almost uniform over all regions(anterior, septal, posterior and lateral)of the left ventricular wall, while the magnitudes of displacements were different from regions to regions. The magnitude of minimum principal strain in the anterior wall of the heart with the disease was smaller compared with those of the normal hearts. This study may suggest that the minimum principal strain could be an alternative effective index to evaluate the cardiac contractility.
- 一般社団法人日本機械学会の論文
- 1997-12-15
著者
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INABA Tadashi
Department of Mechanical Engineering, Faculty of Engineering, Mie University
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TOKUDA Masataka
Department of Mechanical Engineering, Faculty of Engineering, Mie University
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Inaba T
Department Of Mechanical Engineering Mie University
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Inaba Tadashi
Department Of Mechanical Engineering Mie University
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Tokuda Masataka
Graduate School Of Engineering Mie University
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Tokuda Masataka
Department Of Mechanical Engineering Mie University
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KINOSADA Yasutomi
Matsushita Memorial Hospital
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KINOSADA Yasutomi
Department of Medical Informatics, Gifu University
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SAWAKI Yutaka
Department of Mechanical Engineering, Mie University
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YAGI Kazuo
Department of Mechanical Engineering, Mie University
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YAGI Kazuo
Tokyo Metropolitan University of Health Science
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SAWAKI Yutaka
Tokyo Metropolitan University of Health Science
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Yagi Kazuo
Department Of Mechanical Engineering Mie University
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Yagi Kazuo
Department Of Health Science Tokyo Metropolitan University Of Health Science University
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Sawaki Y
Mie Univ. Tsu City
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Sawaki Yutaka
Department Of Mech. Engineering Faculty Of Engineering Mie University
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Tokuda Masataka
Department Of Mechanical Engineering Faculty Of Engineering Mie University
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Kinosada Yasutomi
Department Of Biomedical Informatics Gifu University Graduate School Of Medicine
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TOKUDA Masataka
Department of Hematology and Medical Oncology, Fujita Health University School of Medicine
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