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Non-Invasive Assessment of Spatiotemporal Organization of Ventricular Fibrillation Through Principal Component Analysis., , , , , , и . CinC, www.cinc.org, (2017)The Heart Recording Conditions Impact the Assessment of the Electrocardiography Imaging Inverse Solution., , , , и . CinC, стр. 1-4. www.cinc.org, (2018)Atrial Electro-anatomic Mapping with a Novel Noncontact Approach., , , , , , и . CinC, www.cinc.org, (2017)3D High Resolution Imaging of Human Heart for Visualization of the Cardiac Structure., , , , , , , , , и 1 other автор(ы). FIMH, том 11504 из Lecture Notes in Computer Science, стр. 196-207. Springer, (2019)Do we need to enforce the homogeneous Neumann condition on the torso for solving the inverse electrographic problem?, , , , , и . CinC, www.cinc.org, (2016)Impact of Signal Preprocessing on the Inverse Localization of the Origin of Ventricular Pacing., , , , , и . CinC, стр. 1-4. www.cinc.org, (2018)Optimization of Organ Conductivity for the Forward Problem of Electrocardiography., , и . CinC, www.cinc.org, (2016)Adaptive placement of the pseudo-boundaries improves the conditioning of the inverse problem., , , , , и . CinC, www.cinc.org, (2016)Analysis of Signal-Averaged Electrocardiogram Performance for Body Surface Recordings., , , , , и . CinC, стр. 1-4. IEEE, (2019)Interpolating Low Amplitude ECG Signals Combined with Filtering According to International Standards Improves Inverse Reconstruction of Cardiac Electrical Activity., , , , , и . FIMH, том 11504 из Lecture Notes in Computer Science, стр. 112-120. Springer, (2019)