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Original Article

Phonocardiogram spectral analysis simulator of mitral valve prostheses

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Pages 222-231 | Published online: 09 Jul 2009

References

  • Wifting D. W., Kingsbury C. J., Reventas T. In vitro sound comparison of four mechanical heart valves. Baxter Healthrare Corporation. Mechanical Valve Technical Bulletin. 1987; 5: 238–241
  • Moritz A., Kobinia G., Steinseifer U. Subjektive Geräuschempfindung und objektive Lautstärkemessung nach Herzklapperiersatz mit St-Jude-Medical und Duromedics-Edwards Doppelflügelprothesen. Zeitschrift für Kardiologie 1989; 78: 784–789
  • Haggag YM. Etude théorique et expérimental de l'écoulement des fluidcs autour d'une valve cardiaque autonettoyante. Université de Montréal. 1981, Dissertation
  • Durand L. G., De Guise J., Cuardo R. FIT techniques for the spectral analysis of prosthetic heart valve sounds. Proceedings of the Fourth Annual Symposium on Computer Applications in Medical Care. 1980, 1105–1111
  • Cooley J. W., Tukey J. W. An algorithm for the machine calculation of complex Fourier series. Mathematics of Computation 1965; 19: 297–301
  • Portnoff M R. Time-frequency representation of digital signals and systems based on short-time Fourier analysis. IEEE Acoustics, Speech. and Signal Processing 1980; ASSP-28: 55–69
  • Bergland G. D. A guided tour of the fast Fourier transform. IEEE Spertrum July, 1969; 41–52
  • Brigham E. O. The Fast Fourier Transform. Prentice-Hall, New Jersey, Englewood Cliffs 1974
  • Kayhi S., Marple S. L., Jr. Spectrum analysis-a modern perspective. Proceedings of the IEEE 1981; 69: 1366–1419
  • Yoganathan A. P., Gupta R., Udwadia F. E. Use of the fast Fourier transform for frequency analysis of the first heart sound in normal man. Medical and Biological Engineering. 1976; 14: 69–73
  • Yoganathan A. P., Gupta R., Udwadia F. E. Use of the fast Fourier transmorm in the frequency analysis of the second heart sound in normal man. Medical and Biological Engineering 1976; 14: 455–460
  • Blanchard M., Durand J., Durand L. G., Guardo R. Instrumentation for prosthetic heart valve sound analysis. IEEE Frontiers of Engineering and Computing in Health Care 1983; 261–264
  • Durand L. C., Brais Hl., Blanchard M. Fourier analysis of Ionescu-Shiley prosthetic closing sounds. 37th ACEME 1984; 150
  • Stein P. D., Sabbah H. N., Lakier J. B., Goldtein S. Frequency spectrum of the aortic component of the second heart sound in patients with normal valves, aortic stenosis and aortic porcine senografts: potential for detection of porcine xenograft degeneration. American Journal of Cardiology 1980; 46: 48–52
  • Stein P. D., Sabbah H. N., Magillan D. J., Jr., Lakier J. B. hlrchanism of a musical systolic murmur caused by a degenerated porcine bioprosthetic valve. American Journal of Cardiologv. 1982; 49: 1874–1882
  • Sabbah H. N., Magillan D. J., Lakier J. B., Stein P. D. Hemodynamic determinants of the frequency and amplitude of a musical murmur produced by a regurgitant mitral bioprosthetic valve. American Journal of Cardiologv 1982; 50: 53–58
  • Suobank D. W., Yoganathan A. P., Harrison E. C., Corcoran W. H. A quantitative method for the in vitro study of sounds produced by prosthetic aortic heart valves. Part I: analytical considerations. Medical and Biological Engineering and Computing 1984; 22: 32–39
  • Suobank D. W., Yoganathan A. P., Harrison E. C., Corcoran W. H. A quantitative method for the in vitro study of sounds produced by prosthetic aortic heart valves. Part II: an experimental, comparative study of the sounds produced by a normal and simulated-abnormal Starr-Edwards series 2400 aortic prosthrsis. Medical and Biological Engineering and Computing 1981; 22: 40–47
  • Suobank D. W., Yoganathan A. P., Harrison E. C., Corcoran W. H. A quantitative method for the in vitro study of sounds produced by prosthetic aortic heart valves. Part III: an experimental comparative study of the sounds produced by normal and simulated-abnormal Smeloff aortic prosthesis. Medical and Biological Engineering and Computing. 1984; 22: 48–54
  • Foale R. A., Joo T. H., McClellan J. H. Detection of aortic porcine valve dysfunction by maximum entropy spectral analysis. Circulation 1963; 68: 42–19
  • Joo T. H., McClellan J. H., Foale R. A., Myers G. S., Lees R. S. Polezero modeling and classification of phonocardiograms. IEEE Transactions an Biomedical Engineering 1983; 30: 110–118
  • Bement S., Veeneman D. E. Comments on pole-zero modeling and classification of phonocardiograms. IEEE Transartions on Biomedical Engineering 1984; 31: 473–474
  • Durand L. G., De Guise J., Gloutier G., Guardo R., Brais M. Evaluation of FFT-based and modern parametric methods for spectral analysis of bioprosthetic valve sounds. IEEE Transactions on Biomedical Engineering 1986; 33: 572–578
  • Sagar K. B., Wann S., Paulsen W. H. J., Romhilt D. W. Doppler echocardiographic evaluation of Hancock and Björk-Shiley prosthetic valves. Journal of the American College Of Cardiology 1986; 7: 681–687
  • Ryan T., Armstrong W. F., Dillon J. C., Feigenbaum H. Doppler echocardiographic evaluation of patients with porcine mitral valves. American Heart Journal 1986; 111: 237–244

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