Bio inspired technological performance in color Doppler ultrasonography and echocardiography for enhanced diagnostic precision in fetal congenital heart disease

The aim of this experiment is to investigate the bioinspired diagnostic performance of color Doppler ultrasound (CDUS) and two-dimensional (2D) echocardiography (ECG) for fetal congenital heart disease (FCHD). The research subjects were 33 expectant mothers with a diagnosis of FCHD at Xiangyang No....

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Main Authors: Kang Zhang, Jing Zhong
Format: Article
Language:English
Published: Elsevier 2024-12-01
Series:SLAS Technology
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Online Access:http://www.sciencedirect.com/science/article/pii/S247263032400089X
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author Kang Zhang
Jing Zhong
author_facet Kang Zhang
Jing Zhong
author_sort Kang Zhang
collection DOAJ
description The aim of this experiment is to investigate the bioinspired diagnostic performance of color Doppler ultrasound (CDUS) and two-dimensional (2D) echocardiography (ECG) for fetal congenital heart disease (FCHD). The research subjects were 33 expectant mothers with a diagnosis of FCHD at Xiangyang No. 1 People's Hospital between January 2017 and January 2021. The accuracy, sensitivity, and specificity of the two detection techniques were computed to ascertain and compare the diagnostic efficiency after CDUS and ECG examinations of all pregnant women. According to the findings, the prenatal CDUS detection rate was 92.61% higher than the 2D ECG detection rate (64.32%). The CDUS had an accuracy of 93.94%, sensitivity of 93.55%, and specificity of 100%, detecting 29 true positives, 0 false positives, 2 false negatives, and 2 true negatives. At 84.85% accuracy, 88.89% sensitivity, and 80% specificity, the 2D ECG identified 16 true positives, 3 false positives, 2 false positives, and 12 true negatives. There was a statistically significant (P < 0.05) difference between the accuracy, sensitivity, and specificity of 2D ECG and CDUS. In summary, CDUS was more effective than 2D ECG in diagnosing prenatal FCHD, and it also had a lower rate of missed and incorrect diagnoses.
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spelling doaj-art-c4d135703f684e868ac1fb95f64d3e5f2024-12-18T08:51:03ZengElsevierSLAS Technology2472-63032024-12-01296100207Bio inspired technological performance in color Doppler ultrasonography and echocardiography for enhanced diagnostic precision in fetal congenital heart diseaseKang Zhang0Jing Zhong1Department of Ultrasound and Imaging, Xiangyang No.1 People's Hospital, Hubei University of Medicine, Xiangyang, Hubei 441000, ChinaCorresponding author.; Department of Ultrasound and Imaging, Xiangyang No.1 People's Hospital, Hubei University of Medicine, Xiangyang, Hubei 441000, ChinaThe aim of this experiment is to investigate the bioinspired diagnostic performance of color Doppler ultrasound (CDUS) and two-dimensional (2D) echocardiography (ECG) for fetal congenital heart disease (FCHD). The research subjects were 33 expectant mothers with a diagnosis of FCHD at Xiangyang No. 1 People's Hospital between January 2017 and January 2021. The accuracy, sensitivity, and specificity of the two detection techniques were computed to ascertain and compare the diagnostic efficiency after CDUS and ECG examinations of all pregnant women. According to the findings, the prenatal CDUS detection rate was 92.61% higher than the 2D ECG detection rate (64.32%). The CDUS had an accuracy of 93.94%, sensitivity of 93.55%, and specificity of 100%, detecting 29 true positives, 0 false positives, 2 false negatives, and 2 true negatives. At 84.85% accuracy, 88.89% sensitivity, and 80% specificity, the 2D ECG identified 16 true positives, 3 false positives, 2 false positives, and 12 true negatives. There was a statistically significant (P < 0.05) difference between the accuracy, sensitivity, and specificity of 2D ECG and CDUS. In summary, CDUS was more effective than 2D ECG in diagnosing prenatal FCHD, and it also had a lower rate of missed and incorrect diagnoses.http://www.sciencedirect.com/science/article/pii/S247263032400089XTwo-dimensional echocardiographyColor Doppler ultrasoundFetal congenital heart diseaseDiagnostic performance
spellingShingle Kang Zhang
Jing Zhong
Bio inspired technological performance in color Doppler ultrasonography and echocardiography for enhanced diagnostic precision in fetal congenital heart disease
SLAS Technology
Two-dimensional echocardiography
Color Doppler ultrasound
Fetal congenital heart disease
Diagnostic performance
title Bio inspired technological performance in color Doppler ultrasonography and echocardiography for enhanced diagnostic precision in fetal congenital heart disease
title_full Bio inspired technological performance in color Doppler ultrasonography and echocardiography for enhanced diagnostic precision in fetal congenital heart disease
title_fullStr Bio inspired technological performance in color Doppler ultrasonography and echocardiography for enhanced diagnostic precision in fetal congenital heart disease
title_full_unstemmed Bio inspired technological performance in color Doppler ultrasonography and echocardiography for enhanced diagnostic precision in fetal congenital heart disease
title_short Bio inspired technological performance in color Doppler ultrasonography and echocardiography for enhanced diagnostic precision in fetal congenital heart disease
title_sort bio inspired technological performance in color doppler ultrasonography and echocardiography for enhanced diagnostic precision in fetal congenital heart disease
topic Two-dimensional echocardiography
Color Doppler ultrasound
Fetal congenital heart disease
Diagnostic performance
url http://www.sciencedirect.com/science/article/pii/S247263032400089X
work_keys_str_mv AT kangzhang bioinspiredtechnologicalperformanceincolordopplerultrasonographyandechocardiographyforenhanceddiagnosticprecisioninfetalcongenitalheartdisease
AT jingzhong bioinspiredtechnologicalperformanceincolordopplerultrasonographyandechocardiographyforenhanceddiagnosticprecisioninfetalcongenitalheartdisease