Fetal ECG extraction from maternal ECG using deeply supervised LinkNet++ model
暂无分享,去创建一个
H. Yalcin | Z. Mahbub | Onur Mutlu | R. Kamal | Arafat Rahman | A. Khandakar | S. Pedersen | M. Chowdhury | S. Mahmud
[1] F. Musharavati,et al. NABNet: A Nested Attention-guided BiConvLSTM network for a robust prediction of Blood Pressure components from reconstructed Arterial Blood Pressure waveforms using PPG and ECG signals , 2023, Biomed. Signal Process. Control..
[2] S. Dhanalakshmi,et al. Joint time-frequency analysis and non-linear estimation for fetal ECG extraction , 2022, Biomed. Signal Process. Control..
[3] Amith Khandakar,et al. A Shallow U-Net Architecture for Reliably Predicting Blood Pressure (BP) from Photoplethysmogram (PPG) and Electrocardiogram (ECG) Signals , 2021, Sensors.
[4] Weibin Zhao,et al. Fetal ECG extraction using short time Fourier transform and generative adversarial networks , 2021, Physiological measurement.
[5] Radek Martinek,et al. System for adaptive extraction of non-invasive fetal electrocardiogram , 2021, Appl. Soft Comput..
[6] Moncef Gabbouj,et al. Robust Peak Detection for Holter ECGs by Self-Organized Operational Neural Networks , 2021, IEEE Transactions on Neural Networks and Learning Systems.
[7] Anh-Tuan Dinh,et al. Fetal ECG Extraction From Maternal ECG Using Attention-Based CycleGAN , 2021, IEEE Journal of Biomedical and Health Informatics.
[8] R. Martínek,et al. A novel algorithm based on ensemble empirical mode decomposition for non-invasive fetal ECG extraction , 2021, PloS one.
[9] S. Kiranyaz,et al. COVID-19 infection localization and severity grading from chest X-ray images , 2021, Computers in Biology and Medicine.
[10] Carlo Cattani,et al. Clifford Wavelet Entropy for Fetal ECG Extraction , 2021, Entropy.
[11] Ezhil E. Nithila,et al. Detection of Fetal Cardiac Anomaly from Composite Abdominal Electrocardiogram , 2021, Biomed. Signal Process. Control..
[12] Ozer Can Devecioglu,et al. Robust R-Peak Detection in Low-Quality Holter ECGs Using 1D Convolutional Neural Network , 2020, IEEE Transactions on Biomedical Engineering.
[13] Moncef Gabbouj,et al. COVID-19 infection map generation and detection from chest X-ray images , 2020, Health Information Science and Systems.
[14] Amith Khandakar,et al. Machine Learning in Wearable Biomedical Systems , 2020, Sports Science and Human Health - Different Approaches.
[15] J. Jezewski,et al. Fetal electrocardiograms, direct and abdominal with reference heartbeat annotations , 2020, Scientific Data.
[16] Anh Dinh,et al. Single channel high noise level ECG deconvolution using optimized blind adaptive filtering and fixed-point convolution kernel compensation , 2020, Biomed. Signal Process. Control..
[17] Sridhar Krishnan,et al. Separation of Fetal-ECG From Single-Channel Abdominal ECG Using Activation Scaled Non-Negative Matrix Factorization , 2020, IEEE Journal of Biomedical and Health Informatics.
[18] Yue Zhang,et al. Single-lead noninvasive fetal ECG extraction by means of combining clustering and principal components analysis , 2019, Medical & Biological Engineering & Computing.
[19] Jianming Liang,et al. UNet++: Redesigning Skip Connections to Exploit Multiscale Features in Image Segmentation , 2019, IEEE Transactions on Medical Imaging.
[20] Xuemei Guo,et al. Fetal electrocardiography extraction with residual convolutional encoder–decoder networks , 2019, Australasian Physical & Engineering Sciences in Medicine.
[21] Xuemei Guo,et al. QRStree: A prefix tree-based model to fetal QRS complexes detection , 2019, PloS one.
[22] Radek Martinek,et al. Novel Hybrid Extraction Systems for Fetal Heart Rate Variability Monitoring Based on Non-Invasive Fetal Electrocardiogram , 2019, IEEE Access.
[23] Xiaoqi Li,et al. Towards Accurate High Resolution Satellite Image Semantic Segmentation , 2019, IEEE Access.
[24] Antonio García,et al. A clustering-based method for single-channel fetal heart rate monitoring , 2018, PloS one.
[25] Jan Nedoma,et al. Comparative Effectiveness of ICA and PCA in Extraction of Fetal ECG From Abdominal Signals: Toward Non-invasive Fetal Monitoring , 2018, Front. Physiol..
[26] Xuemei Guo,et al. A deep learning approach for fetal QRS complex detection , 2018, Physiological measurement.
[27] Qingjie Liu,et al. Road Extraction by Deep Residual U-Net , 2017, IEEE Geoscience and Remote Sensing Letters.
[28] Sridhar Krishnan,et al. Real-time fetal ECG extraction from multichannel abdominal ECG using compressive sensing and ICA , 2017, 2017 39th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC).
[29] Alberto Macerata,et al. A new method for QRS complex detection in multichannel ECG: Application to self-monitoring of fetal health , 2017, Comput. Biol. Medicine.
[30] Lei Wang,et al. A Novel Technique for Fetal ECG Extraction Using Single-Channel Abdominal Recording , 2017, Sensors.
[31] Serge J. Belongie,et al. Feature Pyramid Networks for Object Detection , 2016, 2017 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[32] Roberto Rinaldo,et al. Separation and Analysis of Fetal-ECG Signals From Compressed Sensed Abdominal ECG Recordings , 2016, IEEE Transactions on Biomedical Engineering.
[33] Gari D Clifford,et al. Non-invasive fetal ECG analysis , 2014, Physiological measurement.
[34] Alistair E. W. Johnson,et al. A Comparison of Single Channel Fetal ECG Extraction Methods , 2014, Annals of Biomedical Engineering.
[35] Rute Almeida,et al. A wavelet-based method for assessing fetal cardiac rhythms from abdominal ECGs , 2013, Computing in Cardiology 2013.
[36] Christian Jutten,et al. Fetal ECG Extraction by Extended State Kalman Filtering Based on Single-Channel Recordings , 2013, IEEE Transactions on Biomedical Engineering.
[37] Janusz Jezewski,et al. Determination of fetal heart rate from abdominal signals: evaluation of beat-to-beat accuracy in relation to the direct fetal electrocardiogram , 2012, Biomedizinische Technik. Biomedical engineering.
[38] Mamun Bin Ibne Reaz,et al. Techniques of FECG signal analysis: Detection and processing for fetal monitoring , 2007 .
[39] J. Guerrero-Martínez,et al. New algorithm for fetal QRS detection in surface abdominal records , 2006, 2006 Computers in Cardiology.
[40] P. Jeffries,et al. TECHNOLOGY ‐ BASED vs. Traditional Instruction: A Comparison of Two Methods for TEACHING the Skill of Performing a 12‐Lead ECG , 2003, Nursing education perspectives.
[41] Boaz Rafaely,et al. A computationally efficient frequency-domain LMS algorithm with constraints on the adaptive filter , 2000, IEEE Trans. Signal Process..
[42] Willis J. Tompkins,et al. A Real-Time QRS Detection Algorithm , 1985, IEEE Transactions on Biomedical Engineering.
[43] Earl R. Ferrara,et al. Fetal Electrocardiogram Enhancement by Time-Sequenced Adaptive Filtering , 1982, IEEE Transactions on Biomedical Engineering.
[44] Md. Shafayet Hossain,et al. Motion Artifacts Correction From EEG and fNIRS Signals Using Novel Multiresolution Analysis , 2022, IEEE Access.
[45] Mohammad Monir Uddin,et al. A Novel Non-Invasive Estimation of Respiration Rate From Motion Corrupted Photoplethysmograph Signal Using Machine Learning Model , 2021, IEEE Access.
[46] Radek Martinek,et al. Hybrid Methods Based on Empirical Mode Decomposition for Non-Invasive Fetal Heart Rate Monitoring , 2020, IEEE Access.
[47] G. Clifford,et al. A Review of Fetal ECG Signal Processing; Issues and Promising Directions. , 2010, The open pacing, electrophysiology & therapy journal.
[48] A. P. Nemirko,et al. Investigation of time, amplitude, and frequency parameters of a direct fetal ECG signal during labor and delivery , 2006, Pattern Recognition and Image Analysis.
[49] Gari D. Clifford,et al. ECG Statistics , Noise , Artifacts , and Missing Data , 2006 .