2015Advances in cardiologyRequires access

Simulation of Body Surface Potentials in the Dog

John P. Boineau, R. C. Barr, T.C. Pilkington

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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.

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Available 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.

Key concepts: Torso, Body surface, Medicine, Cardiology, QRS complex, Distribution (mathematics), Internal medicine, Surface (topology)

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