Cardiac biopotential analysis system and method

Surgery – Truss – Pad

Patent

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

128702, 128703, 128704, A61B 504

Patent

active

049248758

ABSTRACT:
Disclosed is a cardiac biopotential analysis system and method for detecting, in a noninvasive manner, the degree of myocardial ischemia and the amount of cardiac electrophysiologic stability present in a subject. A suitable body surface electrode acquires the signal from a region of interest. The body surface electrocardiographic signals are then amplified, digitized and transmitted to a host computer where an arrhythmia free QRST complex template is chosen interactively. Using cross-correlation, 50 subsequent complexes that mask the template are extracted. A Fast Fourier Transform (FFT) is then performed on every beat. The FFT results of every QRST are used to produce a bispectral complex and real triple product arrays. Each point in these arrays is then averaged over the 50 previously acquired QRST complexes. The magnitude of each averaged point in the complex triple product arrays is then squared to produce a bispectral density array, which when divided by the complex real triple product array forms a bicoherence array. The bicoherence array provides a figure of merit for the detection and quantification of myocardial ischemia in the region probed by that lead. The array also provides a quantification of cardiac electrical properties.

REFERENCES:
patent: 3499124 (1970-03-01), Wortzman
patent: 4336810 (1982-06-01), Anderson et al.
patent: 4665485 (1987-05-01), Lundy et al.
patent: 4732158 (1988-05-01), Sadeh
patent: 4742831 (1988-05-01), Silvian
J. N. Hershleb. Signal Analysis of Ventricular Fibrillation.
N. G. Chamoun. Bispectral Analysis of Phase Lockin in the R--R Interval Series.
N. G. Chamoun. Autonomic Control of Phase Locking in the R--R Interval Series as Assessed by the Bispectrum.
N. G. Chamoun. Bispectral Properties of the R--R Interval Time Series.
Brillinger, D. R. An Introduction to Polyspecta.
Huber, P. J., Statistical Method for Investigating Phase Relations in Stationary Stochastic Processes.
Tyron, P. V., The Bispectrum and Higher-Order Spectra: A Bibliography.
Nikias, C. L., Bispectrum Estimation: A Digital Signal Processing Framework.
Kleiner, N., Analysis of the Interelations Between Frequency Bands of the EEG by means of the Bispectrum.
Dumermuth, G., Analysis of the Interrelations Between Frequency Bands of the EEG by means of the Bispectrum.
Barnett, T. P., Bispectrum Analysis of Electroencephalogram Signals During Walking and Sleeping.
Susumum, T., Analysis of Wave Shapes of Alphas Wave on EEG by means of the Bispectrum.
Whitton, J. L., Genetic Dependence of the Electroencephalogram Bispectrum.
Raghuveer, M. R., Bispectrum Estimation: A Parametric Approach.
Teichholz, L. E., et al., The Cardiointegram: Detection of Coronary Artery Disease in Males with Chest Pain and a Normal Resting Electrocardiogram.
Simson, M. Use of Signals in the Terminal QRS Complex to Identify Patients with Ventricular Tachycardia after Myocardial Infarction.
Cain, M. E. et al., Fast-Fourier Transform Analysis of Signal-Averaged Electrocardiograms for Identification of Patients Prone to Sustained Ventricular Tachycardia.
Nolle, F. M. A Clinical Computer System for Monitoring EKG Rythm.
Nolle, F. M. et al., The ARGUS/H System for Rapid Analysis of Ventricular Arrhythmias.
Meade, C. N., et al., ARGUS Algorithm Development.
Oliver, G. C., et al., Detection of Premature Ventricular Contractions with a Clinical System for Monitoring Electrocardiographic Rhythms.
Balm, G., Crosscorrelation Techniquies Applied to the Electrocardiogram Interpretation Problem.
Automatic Reel Time Arrhythmia Monitoring in the Intensive Coronary Care Unit. American Journal of Cardiology.
Spitz, A. L., et al., Ambulatory Arrhythmia Quantification by a Correlation Technique.
Spitz, A. L. et al., Automated Family Classification in Ambulatory Arrhythmia Monitoring.
Drawing No.: 261101-873. Name: Pre Amp Iso.
Patient Safety. Hewlett-Packard.
Solar Cells Make Monitoring Safe.
Holmer, N. G., Isolation Amplifier Energized by Ultrasound.
Klijn, J. A., The Isolation Amplifier, An Interface Between EEG Recorder and Data Processor.
Moseley, H., et al., Removal of AC Interface from the Electrocardiogram.

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

Cardiac biopotential analysis system and method does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with Cardiac biopotential analysis system and method, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Cardiac biopotential analysis system and method will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-615626

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.