43
Views
6
CrossRef citations to date
0
Altmetric
Research Article

Differences in foetal heart rate variability from phonocardiography and abdominal electrocardiography

, , , , &
Pages 39-45 | Published online: 04 Aug 2009

  • ACOG COMMITTEE, 2000, Antepartum fetal surveillance. International Journal of Gynecology and Obstetrics, 8, 175-186.
  • PARER, W., PARER, J. J. T., HOLBROOK, R. H., and BLOCK, S. B., 1985, Validity of mathematical methods of quantitating fetal heart rate variability. American Journal of Obstetrics and Gynecology, 153, 402-409.
  • BREBOROWICZ, G., MOCZKO, J. A., and GADZINOWSKI J., 1994, Analysis of fetal heart rate in the frequency domain. A Critical Appraisal of Fetal Surveillance, edited by H. P. van Geijn and F. J. A. Copray (Amsterdan: Excerpta Medica, Elsevier), pp. 349-353.
  • DAWES, G. S., MOULDEN, M., and REDMAN, C. W. G., 1990, Criteria for the design of fetal heart rate analysis systems. International Journal of Biomedical Computing 25, 287-294.
  • DAWES, G. S., MOULDEN, M., and REDMAN, C. W. G., 1990, Limitations of antenatal fetal heart rate monitors. American Journal of Obstetrics and Gynecology, 162, 170-173.
  • ECHEVERRÍA, J. C., RAMÍREZ, M. N., PIMENTEL, A. B., RODRÍGUEZ, R. R., GONZÁLEZ, R. C., and MEDINA, V. B., 1998, Fetal QRS extraction based on wavelet analysis and pattern matching. Computers in Cardiology, 25, 529-532.
  • GOODLIN, R. C., 1979, History of fetal monitoring. American Journal of Obstetrics and Gynecology, 133, 323-352.
  • BÁRTFAI, G., THURZÓ, L., KOVÁCS, L., and BODA, K., 1983, Comparison of cardiotocograms prepared by abdominal electrocardiography and by ultrasound cardiography. Acta Medico Hungarica, 40, 7-15.
  • SOLUM, T., 1980, A comparison of the three methods for external fetal cardiography. Acta Obstetricia Et Gynecologica Scandinavica, 59, 123-126.
  • TALBERT, D. G., DAVIES, W. L., JOHNSON, F., ABRAHAM, N., COLLEY, N., and SOUTHALI, D. P., 1986, Wide bandwidth fetal phonography using a sensor matched to the compliance of the mother's abdominal wall. IEEE Transactions on Biomedical Engineering, 33, 175-181.
  • GOOVAERTS, H. G., WILMSEN, A. A., CORTENRAAD, M. G. G., VAN GEIJN, H. P., and ROMPELMAN, O., 1991, Recording and processing of fetal movements and sounds obtained with the Inpho inductive transducer. Medicine & Biological Engineering & Computing, 29, NS20-NS26.
  • ZUCKERWAR, A. J., PRETLOW, R. A., STOUGHTON, J. W., and BAKER, D. A., 1993, Development of a piezopolymer pressure sensor for a portable fetal heart rate monitor. IEEE Transactions on Biomedical Engineering, 40, 963-969.
  • BASSIL, H. E., and DRIPPS, J. H., 1989, Real time processing and analysis of fetal phonocardiographic signals. Clinical Physics and Physiological Measurements, 10(Suppl. B), 67-74.
  • ROWSELL, T. D., 1993, Real time analysis of fetal phonography signals. PhD Thesis, Cambridge University, Cambridge, UK.
  • PEÑA, C. M., GONZÁLEZ, R. C., ALJAMA, T. C., CARRASCO, S. S., ORTIZ, R. P., Vargas, C. G., and VALENCIA, G., 1994, Método automatizado para Ia mediciön del ciclo cardiaco fetal por fonocardiografia. Revista Mexicana de Ingeniería Biomédica, 15, 248-258.
  • KovÁcs, F., TöRöK, M., and HABERMAJER, L, 2000, A rulebased phonocardiographic method for long-term fetal heart rate monitoring. IEEE Transactions on Biomedical Engineering, 47, 124-130.
  • GONZÁLEZ-CAMARENA, R., CARRASCO-SOSA, S., CHARLESTONVILLALOBOS, S., GAITÁN-GONZÁLEZ, M. J., RAMOS-MARTINEZ, G. R., CHI-LEM, G., and PÉREZ-PADILLA J. R., 1997, Sistema para el análisis cuantitativo de los sonidos respiratorios. Revista Mexicana de lngeniería Biomédica, 18, 7-23.
  • PAN, J., and TOMPKINS, W. J., 1985, A real time QRS detection algorithm. IEEE Transactions on Biomedical Engineering, 32, 230-236.
  • VAN GEIJN, H. P., JONGSMA, H. W., DE HAAN, J., and ESKES, T. K. A. B., 1980, Analysis of fetal heart rate and beat-to-beat variability: interval differential index. American Journal of Obstetrics and Gynecology, 138, 246-252.
  • SCHECHTMAN, V. L., KLUGE, K. A., and HARPER, R. M., 1988, Time-domain system for assessing variation in heart rate. Medical & Biological Engineering & Computing, 26, 367-373.
  • KLEIGER, R. E., STEIN, P. K., BOSNER, M. S., and ROTTMAN, J. N., 1992, Time domain measurements of heart rate variability. Cardiology Clinics, 10, 487-498.
  • FARMAKIDES, G., and WEINER, Z., 1995, Computerized analysis of the fetal heart rate. Clinical Obstetrics and Gynecology, 38, 112-120.
  • TASK FORCE OF THE EUROPEAN SOCIETY OF CARDIOLOGY AND THE NORTH AMERICAN SOCIETY OF PACING AND ELECTROPHYSIOLOGY, 1996, Heart rate variability: standards of measurement, physiological interpretation and clinical use. Circulation, 93, 1043-1065.
  • CERUTTI, S., CIVARDI, S., BIANCHI, A., SIGNORINI, M. G., FERRAZZI, E., AND PARDI. G., 1989, Spectral analysis of antepartum heart rate variability. Clinical Physics and Physiological Measurements, 10(Suppl. B), 27-31.
  • BLAND, J. M., AND ALTMAN, D. G., 1986, Statistical methods for assessing agreement between two methods of clinical measurement. Lancet, 8, 307-310.
  • CHALLIS, R. E., AND KITNEY, R. I., 1991, Biomedical signal processing (in four parts). Part 3. The power spectrum and coherence function. Medical & Biological Engineering & Computing, 29, 225-241.
  • JIMÉNEZ, A., ORTIZ, M. R., PEÑA, M. A., CHARLESTON, S., ALJAMA, A. T., and GONZÁLEZ, R., 1999, The use of wavelet packets to improve the detection of cardiac sounds from the fetal phonocardiogram. Computers in Cardiology, 26, 463-466.
  • LAWSON, G., DAWES, G. S., and REDMAN, C. W. G., 1982, A comparison of two fetal heart rate ultrasound detector systems. American Journal Obstetrics and Gynecology, 143, 840842.
  • CARRASCO, S., GONZÁLEZ, R., JIMÉNEZ, J., ROMAN, R., MEDINA, V., and AZPIROZ, J., 1998, Comparison of the heart rate variability parameters obtained from the electrocardiogram and the blood pressure wave. Journal of Medical Engineering & Technology, 22, 195-205.
  • 30. FERRAZZI, E., PARDI, G., LEVI SETTI, P, CIVARDI, S., and CERUTTI, S., 1989, Power spectrum analysis of the heart rate of human fetus at different gestational ages. Clinical Physics and Physiological Measurements, 10(Suppl. B), 32-36.
  • SAUL, P., and COHEN, R. J., 1994, Respiratory sinus arrhythmia. Vagal Control of the Heart Experimental Basis and Clinical Implications, edited by M. N. Levy & P. J. Schwartz (Armonk, NY: Future Publishing Co. Inc.), pp. 511-536.
  • DIVON, M. Y., YkH, S. Y, ZIMMKR, E. Z., PLATT, L. D., PALDI, E., and PAUL, R. H., 1985, Respiratory sinus arrhythmia in the human fetus. American Journal of Obstetrics and Gynecology, 151, 425-428.
  • SAUL, J. P, BERGER, R. D., CHEN, M. H., and COHEN, R. J., 1989, Tranfer function analysis of autonomie regulation II. Respiratory sinus arrhythmia. American Journal of Physiology, 256, H153-H161.
  • JIMÉNEZ, A., ORTIZ, M. R., PEÑA, M. A., CHARLESTON, S., ALJAMA, A. T., and GONZÁLEZ, R., 2000, Performance of two adaptive subband filtering schemes for processing fetal phonocardiograms: Influence of the wavelet and the level of decomposition. Computers in Cardiology, 27, 427-430.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.