DocumentCode :
591312
Title :
Linear variation analysis of intracardiac atrial impedance during internal cardioversion using rectilinear waveforms and energy step up protocol
Author :
Escalona, O. ; Kodoth, Vivek ; Castro, Nuno ; Xavier, S. ; Walsh, Paul ; Glover, B. ; Lau, Eric ; Manoharan, Ganesh
Author_Institution :
Univ. of Ulster, Newtownabbey, UK
fYear :
2012
fDate :
9-12 Sept. 2012
Firstpage :
721
Lastpage :
724
Abstract :
The major determinants of success during internal cardioversion of atrial fibrillation (AF) are voltage, duration and intracardiac impedance (ICI). However, there is a paucity of published data regarding evidence of ICI dynamics during internal cardioversion of AF using very-low-tilt rectilinear (VLTR) waveforms with stepped energy protocols. In this study, patients with persistent AF were internally cardioverted using both biphasic and monophasic very-low-tilt rectilinear (B-VLTR and M-VLTR) waveforms with a step up energy protocol (50V to 300V). The ICI of patients who had more than 4 shocks delivered were retrospectively analyzed from recorded voltage and current waveforms. A significant reduction in ICI was noticed after each of the first shocks using B-VLTR. The linear change of ICI within a shock, as characterized by its slope (Zm), increased in algebraic value and presented polarity reversal between the positive and negative phase within a B-VLTR shock, particularly after the first shock, where both B-VLTR and M-VLTR presented positive 2nd derivatives. The results obtained provide valuable evidence for understanding electrode-tissue interface factors depending on VLTR defibrillation waveform amplitude, duration and current reversal action.
Keywords :
bioelectric potentials; biological tissues; biomedical electrodes; cardiology; defibrillators; diseases; electric impedance; medical signal processing; patient treatment; variational techniques; waveform analysis; AF internal cardioversion; B-VLTR shock; ICI dynamics; ICI reduction; VLTR defibrillation current reversal; VLTR defibrillation duration; VLTR defibrillation waveform amplitude; atrial fibrillation; biphasic VLTR waveforms; current waveforms; electrode-tissue interface factors; energy step up protocol; intracardiac atrial impedance; intracardiac impedance; linear variation analysis; monophasic VLTR waveforms; polarity reversal; stepped energy protocols; very-low-tilt rectilinear waveforms; voltage 50 V to 300 V; Atrial fibrillation; Defibrillation; Electric shock; Impedance; Protocols; Radio frequency; Standards;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computing in Cardiology (CinC), 2012
Conference_Location :
Krakow
ISSN :
2325-8861
Print_ISBN :
978-1-4673-2076-4
Type :
conf
Filename :
6420495
Link To Document :
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