4.6 Article Proceedings Paper

Modeling the cardiac tissue electrode interface using fractional calculus

Journal

JOURNAL OF VIBRATION AND CONTROL
Volume 14, Issue 9-10, Pages 1431-1442

Publisher

SAGE PUBLICATIONS LTD
DOI: 10.1177/1077546307087439

Keywords

cardiac tissue; impedance; fractional derivative; bioelectrodes

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The tissue electrode interface is common to all forms of biopotential recording (e. g., ECG, EMG, EEG) and functional electrical stimulation ( e. g., pacemaker, cochlear implant, deep brain stimulation). Conventional lumped element circuit models of electrodes can be extended by generalization of the order of differentiation through modification of the defining current-voltage relationships. Such fractional order models provide an improved description of observed bioelectrode behaviour, but recent experimental studies of cardiac tissue suggest that additional mathematical tools may be needed to describe this complex system.

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