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Near-Orthogonal Basis Functions: A Real Time Fetal ECG Technique | IEEE Journals & Magazine | IEEE Xplore

Near-Orthogonal Basis Functions: A Real Time Fetal ECG Technique


Abstract:

A general technique for the real-time extraction of a physiological signal in the presence of well-characterized noise is described using a noninvasive fetal ECG detectio...Show More

Abstract:

A general technique for the real-time extraction of a physiological signal in the presence of well-characterized noise is described using a noninvasive fetal ECG detection system as an example application.
Published in: IEEE Transactions on Biomedical Engineering ( Volume: BME-24, Issue: 1, January 1977)
Page(s): 39 - 43
Date of Publication: 31 January 1977

ISSN Information:

PubMed ID: 832887
Citations are not available for this document.

Cites in Papers - |

Cites in Papers - IEEE (16)

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1.
Fatih Yavuz Ilgin, Hüsamettin Celik, Yusuf Sevim, "Stable signal separation algorithm for ECG signals", 2012 International Symposium on Innovations in Intelligent Systems and Applications, pp.1-4, 2012.
2.
Jenho Tsao, Chao-Yang Hsu, Men-Tzung Lo, "A supervised ICA algorithm for fetal ECG extraction", 2008 International Conference on Intelligent Sensors, Sensor Networks and Information Processing, pp.327-330, 2008.
3.
Abhinav Gupta, M. C. Srivastava, Vineet Khandelwal, Abhilekh Gupta, "A novel approach to fetal ECG extraction and enhancement using blind source separation (BSS-ICA) and adaptive fetal ECG enhancer (AFE)", 2007 6th International Conference on Information, Communications & Signal Processing, pp.1-4, 2007.
4.
E.C. Karvounis, M.G. Tsipouras, D.I. Fotiadis, K.K. Naka, "A Method for Fetal Heart Rate Extraction Based on Time-Frequency Analysis", 19th IEEE Symposium on Computer-Based Medical Systems (CBMS'06), pp.347-347, 2006.
5.
B. Acar, H. Koymen, "SVD-based on-line exercise ECG signal orthogonalization", IEEE Transactions on Biomedical Engineering, vol.46, no.3, pp.311-321, 1999.
6.
P.P. Kanjilal, S. Palit, G. Saha, "Fetal ECG extraction from single-channel maternal ECG using singular value decomposition", IEEE Transactions on Biomedical Engineering, vol.44, no.1, pp.51-59, 1997.
7.
P.P. Kanjilal, G. Saha, "Fetal ECG extraction from single channel maternal ECG using SVD and SVR spectrum", Proceedings of 17th International Conference of the Engineering in Medicine and Biology Society, vol.1, pp.187-188 vol.1, 1995.
8.
J.M. Herbert, W. Peasgood, X.B. Huang, J.A. Crowe, M.S. Woolfson, N. Reed, E.M. Symonds, "Antepartum fetal electrocardiogram extraction and analysis", Proceedings of Computers in Cardiology Conference, pp.875-877, 1993.
9.
S. Horner, W. Holls, P.B. Crilly, "Non-invasive fetal electrocardiograph enhancement", Proceedings Computers in Cardiology, pp.163-166, 1992.
10.
X. Zhou, P. Engler, M.G. Coblentz, "Adaptive filter application in fetal electrocardiography", [1992] Proceedings Fifth Annual IEEE Symposium on Computer-Based Medical Systems, pp.656-662, 1992.
11.
S. Horner, P.B. Crilly, "A review of fetal ECG detection and enhancement methodologies", [1991 Proceedings] The Twenty-Third Southeastern Symposium on System Theory, pp.278-282, 1991.
12.
Jan Vanderschoot, Dirk Callaerts, Willy Sansen, Joos Vandewalle, Gaston Vantrappen, Jozef Janssens, "Two Methods for Optimal MECG Elimination and FECG Detection from Skin Electrode Signals", IEEE Transactions on Biomedical Engineering, vol.BME-34, no.3, pp.233-243, 1987.
13.
Sanjeev D. Nandedkar, Donald B. Sanders, "Special-Purpose Orthonormal Basis Functions - Application to Motor Unit Action Potentials", IEEE Transactions on Biomedical Engineering, vol.BME-31, no.4, pp.374-377, 1984.
14.
Leif Sornmo, Per Ola Borjesson, Mats-Erik Nygards, Olle Pahlm, "A Method for Evaluation of QRS Shape Features Using a Mathematical Model for the ECG", IEEE Transactions on Biomedical Engineering, vol.BME-28, no.10, pp.713-717, 1981.
15.
Piet Bergveld, Wietze J. H. Meijer, "A New Technique for the Suppression of the MECG", IEEE Transactions on Biomedical Engineering, vol.BME-28, no.4, pp.348-354, 1981.
16.
Stephen Azevedo, Richard L. Longini, "Abdominal-Lead Fetal Electrocardiographic R-Wave Enhancement for Heart Rate Determination", IEEE Transactions on Biomedical Engineering, vol.BME-27, no.5, pp.255-260, 1980.

Cites in Papers - Other Publishers (16)

1.
C. Kezi Selva Vijila ., M.E., P. Kanagasabapathy ., Stanley Johnson ., " Fetal ECG Extraction using Softcomputing Technique ", Journal of Applied Sciences, vol.6, no.2, pp.251, 2006.
2.
Gustavo Camps-Valls, Marcelino Mart??nez-Sober, Emilio Soria-Olivas, Rafael Magdalena-Benedito, Javier Calpe-Maravilla, Juan Guerrero-Mart??nez, "Foetal ECG recovery using dynamic neural networks", Artificial Intelligence in Medicine, vol.31, no.3, pp.197, 2004.
3.
Steven L. Horner, William M. Holls, "Real-time signal processing of an intrauterine catheters fetal electrocardiogram", Digital Signal Processing, vol.13, no.2, pp.368, 2003.
4.
S Selvan, R Srinivasan, "Processing of Abdominal Fetal Electrocardiogram?A Review", IETE Technical Review, vol.17, no.6, pp.369, 2000.
5.
Andrew Harrison, Nicholas M. Gibson, John A. Crowe, Malcolm S. Woolfson, Barrie R. Hayes-Gill, William Peasgood, Mohammed A. Mohd-Ali, Y. Huang, Julian Herbert, Xia Bing Huang, "Antenatal assessment using the FECG obtained via abdominal electrodes", Journal of Perinatal Medicine, vol.24, no.1, pp.43, 1996.
6.
Nahum Budin, Shimon Abboud, "Real-time multichannel abdominal fetal ECG monitor using Digital Signal CoProcessor", Computers in Biology and Medicine, vol.24, no.6, pp.451, 1994.
7.
Shimon Abboud, Alex Alaluf, Shmuel Einav, Dror Sadeh, "Real-time abdominal fetal ECG recording using a hardware correlator", Computers in Biology and Medicine, vol.22, no.5, pp.325, 1992.
8.
A van Oosterom, "Lead systems for the abdominal fetal electrocardiogram", Clinical Physics and Physiological Measurement, vol.10, no.4B, pp.21, 1989.
9.
D Callaerts, W Sansen, J Vandewalle, G Vantrappen, J Janssens, "Description of a real-time system to extract the fetal electrocardiogram", Clinical Physics and Physiological Measurement, vol.10, no.4B, pp.7, 1989.
10.
T F Oostendorp, A van Oosterom, H W Jongsma, "The fetal ECG throughout the second half of gestation", Clinical Physics and Physiological Measurement, vol.10, no.2, pp.147, 1989.
11.
Dirk Callaerts, Jan Vanderschoot, Joos Vandewalle, Willy Sansen, Gaston Vantrappen, Jozef Janssens, "An adaptive on-line method for the extraction of the complete fetal electrocardiogram from cutaneous multilead recordings", Journal of Perinatal Medicine, vol.14, no.6, pp.421, 1986.
12.
Fumihiko Yano, Satoki P. Ninomija, "A detecting method for the fetal QRS complex with a small amplitude", Journal of Medical Systems, vol.10, no.4, pp.307, 1986.
13.
Adriaan van Oosterom, "Spatial filtering of the fetal electrocardiogram", Journal of Perinatal Medicine, vol.14, no.6, pp.411, 1986.
14.
Vasant D. Saini, Debabrata Maulik, "Computerized detection of low-level fetal signals in the maternal abdominal electrocardiogram", Computers in Biology and Medicine, vol.15, no.2, pp.81, 1985.
15.
J. Vanderschoot, G. Vantrappen, J. Janssens, J. Vandewalle, W. Sansen, Medical Informatics Europe 84, vol.24, pp.249, 1984.
16.
T.A. Reichert, R.L. Longini, J.S. Crowley, J.M. Yu, "A noninvasive extraction of the fetal electrocardiogram", Computers and Biomedical Research, vol.10, no.1, pp.1, 1977.
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