Key result
A heart-model-based electrocardiographic imaging approach achieved an averaged localization error of 3 mm to 4 mm for the site of origin of ventricular activation in computer simulations.
Why the study?
Does a heart-model-based electrocardiographic imaging approach accurately localize the site of origin of cardiac activation in a computer simulation?
Does a heart-model-based electrocardiographic imaging approach accurately localize the site of origin of cardiac activation in a computer simulation?
A novel heart-model-based electrocardiographic imaging approach demonstrated high accuracy in localizing the site of ventricular activation in computer simulations, offering a potential alternative to traditional ECG inverse solutions.
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May inform noninvasive ventricular activation mapping; hypothesis-generating in simulations and requires in vivo validation before clinical consideration.
Li et al. (2001) studied Cardiac activation localization. Heart-model-based electrocardiographic imaging approach was evaluated on Averaged localization error. A heart-model-based electrocardiographic imaging approach achieved an averaged localization error of 3 mm to 4 mm for the site of origin of ventricular activation in computer simulations.
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