2016
DOI: 10.1371/journal.pone.0160999
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Comparison of Electric- and Magnetic-Cardiograms Produced by Myocardial Ischemia in Models of the Human Ventricle and Torso

Abstract: Myocardial ventricular ischemia arises from a lack of blood supply to the heart, which may cause abnormal repolarization and excitation wave conduction patterns in the tissue, leading to cardiac arrhythmias and even sudden death. Current diagnosis of cardiac ischemia by the 12-lead electrocardiogram (ECG) has limitations as they are insensitive in many cases and may show unnoticeable differences to normal patterns. As the magnetic field provides extra information on cardiac excitation and is more sensitive to … Show more

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Cited by 21 publications
(21 citation statements)
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“…Glukhov et al, 2010 ), and a plane wave conduction velocity of 0.5 m.s −1 in all tissues. The body surface potential was computed by placing the ventricular wedge model in a human torso mesh; the forward problem was solved by a boundary element method, as has been described in previous studies (Perez Alday et al, 2015 , 2016 , 2017 ). ECGs were derived from the body surface potential by selecting elements of the torso mesh which correspond to the ECG electrodes.…”
Section: Methodsmentioning
confidence: 99%
“…Glukhov et al, 2010 ), and a plane wave conduction velocity of 0.5 m.s −1 in all tissues. The body surface potential was computed by placing the ventricular wedge model in a human torso mesh; the forward problem was solved by a boundary element method, as has been described in previous studies (Perez Alday et al, 2015 , 2016 , 2017 ). ECGs were derived from the body surface potential by selecting elements of the torso mesh which correspond to the ECG electrodes.…”
Section: Methodsmentioning
confidence: 99%
“…The most significant MCG predictors in our analysis were ventricular depolarization predictors. Researchers who focus on depolarization measures report diagnostic performance characteristics of MCG that is substantially equivalent to, if not better than, those who do not [ 22 ].…”
Section: Discussionmentioning
confidence: 99%
“…A previously developed three dimensional (3D) biophysically detailed computational model of the human ventricles ( Figure 1-Ai) was used to simulated normal ventricular activation [10]. The ventricular model is segmented into the major distinctive electrically heterogeneous regions (Figure 1-Aii).…”
Section: Modelling Datamentioning
confidence: 99%
“…The ventricular model is segmented into the major distinctive electrically heterogeneous regions (Figure 1-Aii). The models incorporated anatomical structures and detailed electrophysiological heterogeneity with cellular electrophysiology being previously described ( Figure 1-Aiii) [10].…”
Section: Modelling Datamentioning
confidence: 99%
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