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Journal ArticleDOI

Adaptive Neuro-Fuzzy Inference System for antepartum antenatal care using phonocardiography

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TLDR
Development of a model based on Adaptive Neuro-Fuzzy Inference System (ANFIS) for evaluation of fetal health status using phonocardiography and results have indicated that the ANFIS can be implemented effectively and provides high accuracy for antepartum antenatal care through phonOCardiography.
Abstract
This work discusses development of a model based on Adaptive Neuro-Fuzzy Inference System (ANFIS) for evaluation of fetal health status using phonocardiography. The model integrates adaptable fuzzy inputs with a modular neural network to deal with the imprecision and uncertainty in the interpretation of the FHR data from phonocardiographic signals. A zero-order Takagi-Sugeno model is chosen for designing ANFIS architecture. The diagnostic parameters e.g., Baseline FHR, Baseline Variability, Acceleration and Deceleration of the FHR are derived from the fPCG signals for training and testing of the model. The elicited fuzzy rules derived from clinical guidelines and other resources are implemented into the ANFIS expert model. The performance of the ANFIS model is evaluated in terms of sensitivity and overall accuracy. The results have indicated that the ANFIS can be implemented effectively and provides high accuracy for antepartum antenatal care through phonocardiography.

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Citations
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Journal ArticleDOI

A novel approach for phonocardiographic signals processing to make possible fetal heart rate evaluations

TL;DR: The overall performance shows that the developed system has a long-term monitoring capability with very high performance to cost ratio and can be used as first screening tool by the medical practitioners.
Proceedings ArticleDOI

Adaptive neuro-fuzzy inference system for acoustic analysis of 4-channel phonocardiograms using empirical mode decomposition

TL;DR: An effective approach for cardiac murmur detection based on adaptive neuro-fuzzy inference systems (ANFIS) over acoustic representations derived from Empirical Mode Decomposition (EMD) and Hilbert-Huang Transform (HHT) of 4-channel phonocardiograms (4-PCG).
References
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TL;DR: Computerized CTG improves accuracy and allows to distinguish fetuses that are truly jeopardized because of hypoxemia, from those who are not, as well as with perinatal outcome.
Journal ArticleDOI

A review and comparative analysis of recent advancements in fetal monitoring techniques.

TL;DR: This review reviewed and analyzed the performance of currently used EFM techniques with the goal of determining a noninvasive, cost-effective alternative for use in the home environment.
Journal ArticleDOI

Biophysical profile in the fetus from a phonographic sensor.

TL;DR: A phonographic transducer which is compliance-matched to the maternal abdomen is developed, making it possible to monitor for long time periods, non-invasively and without discomfort, the sound and infra-sound produced by the fetus.
Proceedings ArticleDOI

A portable phonocardiographic fetal heart rate monitor

TL;DR: A portable PDA-based fetal heart monitor that is able to provide instantaneous fetal heart rate (FHR) for the pregnant women and an approximate 75% of the pregnant mothers are able to hear their babies' heart sound clearly by using this device.
Proceedings ArticleDOI

Long-term Phonocardiographic Fetal Home Monitoring for Telemedicine Systems

TL;DR: Measurements on 47 selected pregnant women have shown that the use of this method significantly reduces the amount of data to be transferred to the computer centre in the hospital, where only the very disturbed time periods have to be evaluated.
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