Regurgitant heart valve flow from 2-D proximal velocity field: continued search for the ideal method
Author:
Publisher
Springer Science and Business Media LLC
Subject
Computer Science Applications,Biomedical Engineering
Link
http://link.springer.com/content/pdf/10.1007/BF02523030.pdf
Reference32 articles.
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2. Ask, P., Loyd, D., andWranne, B. (1986): ‘Regurgitant flow through heart valves: A hydraulic model applicable to ultrasound Doppler measurements’,Med. Biol. Eng. Comput.,24, pp. 643–646
3. Barclay, S. A., Eidenvall, L., Karlsson, M., Andersson, G., Xiong, C., Ask, P., Loyd, D., andWranne, B. (1993): ‘The shape of the proximal isovelocity surface area varies with regurgitant orifice size and distance from orifice: computer simulation and model experiments using color M-mode technique’,J. Am. Soc. Echocardiogr. 6, pp. 433–445
4. Bargiggia, G. S., Tronconi, L., Raisaro, A., Recusani, F., Ragni, T., Valdes-Cruz, L. M., Sahn, D. J., andMontemartini, C. (1990): ‘Color Doppler diagnosis of mechanical prosthetic mitral regurgitation: Usefulness of the flow convergence region proximal to the regurgitant orifice,’Am. Heart J.,120, pp. 1137–1142
5. Bargiggia, G. S., Tronconi, L., Sahn, D. J., Recusani, F., Raisaro, A., de Servi, S., Valdes-Cruz, L. M., andMontemartini, C. (1991): ‘A new method for quantitation of mitral regurgitation based on color flow Doppler imaging of flow convergence proximal to regurgitant orifice’,Circ. 84, pp. 1418–1489
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1. In Vitro Validation of a New Approach for Quantitating Regurgitations Using Proximal Isovelocity Surface Area;Echocardiography;2000-10
2. Increased accuracy of echocardiographic measurement of flow using automated spherical integration of multiple plane velocity vectors;Ultrasound in Medicine & Biology;1999-02
3. Pulsatile Flow Computational Simulations of Mitral Regurgitation;Journal of Biomechanical Engineering;1998-04-01
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