Retraction
Single-channel fetal ECG extraction method based on extended Kalman filtering with singular value decomposition algorithm
Paper Information
Record ID:
63017
Author(s):
Journal:
Publication Date:
May 22, 2023
Retraction Date:
August 21, 2024
(1.3 year years ago)
Subjects:
Institutions:
Country:
🇮🇳 IndiaArticle Type:
Publisher:
Springer - Nature Publishing Group
Open Access:
Yes
PubMed ID:
Not indexed in PubMed
Retraction PubMed ID:
Not indexed in PubMed
Retraction Details
Citations (8)
8
Total Citations2
Post-Retraction(25.0%)
5
Pre-Retraction0
Same DayPost-Retraction Citation Analysis
0
Within 30 days
2
Within 1 year
0
After 2+ years
189
Days since retraction (latest)
Heavy Metals Removal Using Carbon Based Nanocomposites
Unknown Authors
Unknown Journal
Published: Unknown
Review of Non-Invasive Fetal Electrocardiography Monitoring Techniques
Xiongjun Li, Jingyu Wan, Xiaobo Peng
Sensors
Open Access
Published: Feb 2025
189 days after retraction
Research on Signal Component Analysis Method Based on 3D Stochastic Resonance System and Improved EEMD Algorithm
Q. Xiao, Wenxin Yu
Journal of the Franklin Institute
Published: Feb 2025
164 days after retraction
Efficient Application of Kalman Filter for Enhancement of ECG Signal Visibility by Denoising Power Line Interference
Ameet Shah, Dhanpratap Singh
Unknown Journal
Published: Jul 2024
49 days before retraction
A novel hybrid method for calculating the fetal heart rate from the non-invasive abdominal Electrocardiogram signal
Bipin Samuel, Malaya Kumar Hota
Biomedical Signal Processing and Control
Published: Mar 2024
1 citation
1 citation
151 days before retraction
Noise reduction analysis of deformation data based on CEEMD-PE-SVD modeling
Qingda Duan, Hua Xia, Ya Huang
Journal of Physics Conference Series
Open Access
Published: Mar 2024
1 citation
1 citation
173 days before retraction
ECG Signal Denoising by Cross-Bispectrum Data Processing
Oleh Viunytskyi, Alexander Totsky
Lecture notes in networks and systems
Published: Jan 2024
233 days before retraction
Energy-Dependent RLS Architecture for the Separation of Fetal ECG Using Thoracic and Abdominal Lead ECG of Mother
D. Edwin Dhas, M. Suchetha
IEEE Transactions on Instrumentation and Measurement
Published: Jan 2023
3 citations
3 citations
598 days before retraction
Quick Stats
Total Citations:
13
Years Since Retraction:
1.3 year
Open Access:
Yes
Last Checked:
Jul 24, 2025