Simulation of Body Surface Potentials in the Dog
John P. Boineau, R. C. Barr, T.C. Pilkington
Abstract
John P. Boineau, R. C. Barr, T.C. Pilkington
Abstract
AbstractIsopotential maps during the QRS interval demonstrate complex, non-dipolar distributions of the cardiac electrical field as it is projected onto the body surface. Correlations have been made in which the cardiac generator distribution and torso-isopotential distribution were related. These correlations suggest the specific torso-isopotential distributions and their evolution can be related to specific local events in ventricular activation.
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AbstractIsopotential maps during the QRS interval demonstrate complex, non-dipolar distributions of the cardiac electrical field as it is projected onto the body surface. Correlations have been made in which the cardiac generator distribution and torso-isopotential distribution were related. These correlations suggest the specific torso-isopotential distributions and their evolution can be related to specific local events in ventricular activation.
Key concepts: Torso, Body surface, Medicine, Cardiology, QRS complex, Distribution (mathematics), Internal medicine, Surface (topology)