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A three-dimensional computational model of a thin-walled left ventricle

Published: 01 December 1992 Publication History
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References

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Chorin AJ (1967) A numerical method for solving incompressible viscous flow problems. J Comp Physics 2:12-26.
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Garrahy PJ. Kwan OL, Booth DL, DeMaria AN (1990) Assessment of abnormal systolic intraventricular flow patterns by Doppler imaging in patients with left venricular dyssynergy. Circulation 82:95-104.
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Goldberg SH. Allen HD, Marx GR Donnerstein RL (1988) Doppler Echocardiography. 2nd edition. Lea and Febiger Philadelphia 45-65.
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Hawthorne. EW (1961) Instantaneous dimensional changes of the left ventricle in dogs. Circ Res 9:110-9.
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Hawthorne, EW (1966) Geometry of the left ventricle. Am J Cardiol 18:566-73.
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Jiang L. Levine RA. King ME. Weyman AE (1987) An integrated mechanism for systolic anterior motion of the mitral valve in hypertrophic cardiomyopathy based on echocardigraphic findings. Am Heart J 113:633-44.
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Karas S. Elkins, RC (1970) Mechanism of function of the mitral valve leaflets, chordae tendineae and left ventricular papillary muscles in dogs Circ Rex 26:689- 96.
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McDonald UG (1970) The shape and movement of the human left ventricle during systole. Am J Cardiol 26:221-30.
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McQueen DM, Peskin CS, Yellin EL (1982) Fluid dynamics of the initial valve: physiological aspects of a mathematical model Am J Physio} 242:1095-1110.
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Peskin CS (1972) "Flow Patterns Around Heart Valves. A Digital Computer Method for Solving the Equations of Motion." PhD Thesis, Albert Einstein College of Medicine
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Peskin CS (1977) Numerical analysis of blood flow in the heart, method, J Comp Physms 25:220-252.
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Peskin CS, McQueen DM (1989a) A three-dimensional computational method for blood flow in the heart: I. Immersed. elastic fibers in a viscous incompressible fluid. J Comp Physics 81:372-405.
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Peskin CS, McQueen DM (1989b) A three-dimensional computational method for blood flow in the heart: II. Contractile fibers. J Comp Physics 82:289-97.
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Slager CJ, Hooghoudt TE, Serruys PW, Schurbiers JC, Reiber J. Meester G, Verdouw P, Hugenholtz P (1986) Quantitative assessment of regional left ventricular wall motion using endocardial landmarks J Am Coll Cardiol 7:317-26.
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Tsakins AG, von Bernuth G, Rastelli GC, Bourgeois MJ, Titus JL. Wood EH (1971) Size and motion of the mitral valve annulus in anesthetized intact dogs. J Appl Physiol 30:611- 8.
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Vesier CC, Yoganathan AP (1992) Validation of a method to simulated blood flow in the heart. J Comp Physics (in print)
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Weyman AE (1982)Cross-Sectional Echocardiography. Lea and Febiger. Philadelphia:198.
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Williams FP (1987)"The Numerical Simulation of Flow through an Axisymmetric Aortic Heart Valve", Ph D Thesis. Georgia Institute of Technology.

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  • (2010)Patient-specific modeling and analysis of the mitral valve using 3D-TEEProceedings of the First international conference on Information processing in computer-assisted interventions10.5555/1876302.1876319(135-146)Online publication date: 23-Jun-2010

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cover image ACM Conferences
Supercomputing '92: Proceedings of the 1992 ACM/IEEE conference on Supercomputing
December 1992
872 pages
ISBN:0818626305

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IEEE Computer Society Press

Washington, DC, United States

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Published: 01 December 1992

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Supercomputing '92 Paper Acceptance Rate 75 of 220 submissions, 34%;
Overall Acceptance Rate 1,516 of 6,373 submissions, 24%

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  • (2010)Patient-specific modeling and analysis of the mitral valve using 3D-TEEProceedings of the First international conference on Information processing in computer-assisted interventions10.5555/1876302.1876319(135-146)Online publication date: 23-Jun-2010

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