IBT Publications by Schulze of the year 2014


Journal Articles (3)

W. H. W. Schulze, P. Mackens, D. Potyagaylo, K. Rhode, E. Tulumen, R. Schimpf, T. Papavassiliu, M. Borggrefe, and O. Dössel.
Automatic camera-based identification and 3-D reconstruction of electrode positions in electrocardiographic imaging.
In Biomedizinische Technik. Biomedical Engineering, vol. 59(6) , pp. 515-528, 2014
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A. Loewe, W. H. W. Schulze, Y. Jiang, M. Wilhelms, A. Luik, O. Dössel, and G. Seemann.
ECG-Based Detection of Early Myocardial Ischemia in a Computational Model: Impact of Additional Electrodes, Optimal Placement, and a New Feature for ST Deviation.
In BioMed Research International Article, vol. 2015, pp. 530352, 2014
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D. Potyagaylo, E. G. Cortés, W. H. W. Schulze, and O. Dössel.
Binary optimization for source localization in the inverse problem of ECG.
In Medical & Biological Engineering & Computing, vol. 52(9) , pp. 717-728, 2014
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Conference Contributions (5)

W. H. W. Schulze, T. Fritz, D. Potyagaylo, J. Trächtler, R. Schimpf, T. Papavassiliu, E. Tülümen, B. Rudic, V. Liebe, C. Doesch, M. Borggrefe, and O. Dössel.
Effect of mesh resolution on forward calculations of the electrocardiogram in a simplified thorax model.
In Biomedizinische Technik / Biomedical Engineering, vol. 59(s1) , pp. 945-948, 2014
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W. H. W. Schulze, D. Potyagaylo, and O. Dössel.
ECG Imaging - Workflow and Mathematical Concepts.
In Integrating Modalities and Scales in Life Science Imaging, 2014
  
D. Potyagaylo, E. G. Cortes, W. H. W. Schulze, and O. Dössel.
Synthesis and analysis models for sparse signal reconstruction in the inverse problem of ECG.
In Biomedizinische Technik / Biomedical Engineering, vol. 59(s1) , pp. 941-944, 2014
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D. Potyagaylo, W. H. W. Schulze, and O. Dössel.
Local regularization of endocardial and epicardial surfaces for better localization of ectopic beats in the inverse problem of ECG.
In Computing in Cardiology Conference, vol. 41, pp. 837-840, 2014
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A. Reinke, D. Potyagaylo, W. H. W. Schulze, and O. Dössel.
Geometrical model and corresponding conductivities for solving the inverse problem of ECG.
In Biomedizinische Technik / Biomedical Engineering, vol. 59(s1) , pp. 937-940, 2014
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