DocumentCode
406379
Title
Comparative effects of bipolar single site and bipolar linear triple site pacing on atrial activation-studies in canine models
Author
Ryu, K. ; Waldo, A.L. ; Khrestian, C.M. ; Goldstein, R.N. ; Sahadevan, J. ; Dorostkar, P.C.
Author_Institution
Dept. of Biomed. Eng., Case Western Reserve Univ., Cleveland, OH, USA
Volume
1
fYear
2003
fDate
17-21 Sept. 2003
Firstpage
186
Abstract
In anisotropic tissue (e.g., right atrium), nonuniform conduction may cause conduction block/delay, or form a functional line of block, thus, providing a substrate for the initiation/maintenance of atrial arrhythmias. We tested the hypothesis that the activation patterns generated by bipolar, linear, triple site stimulation create more uniform propagation compared to single site stimulation, thereby, minimizing or eliminating potential substrates for initiation/maintenance of reentrant atrial arrhythmias. The canine sterile pericarditis model and normal dogs were studied. A plunge wire electrode pair was placed at the superior aspect of the crista terminalis (CT) for single site pacing. For triple site pacing, three bipolar pairs were placed perpendicular and parallel to the superior aspect of the CT in a linear fashion. Rapid pacing using different electrode configurations was performed at 200 ms and 300 ms cycle lengths up to 6 sec. During pacing, 404 unipolar atrial electrograms were recorded simultaneously from electrode arrays placed on the atria. The data demonstrate that linear triple site pacing creates more uniform linear propagation with less or no conduction delay/block, in contrast to single site pacing which creates elliptical impulse propagation. These findings may help develop alternative pacing techniques for termination and/or prevention of atrial arrhythmias.
Keywords
biomedical electrodes; cardiology; medical signal processing; pacemakers; physiological models; 200 ms; 300 ms; activation patterns; anisotropic tissue; atrial activation; atrial arrhythmias; atrial pacing; canine models; crista terminalis; nonuniform conduction; plunge wire electrode; reentrant atrial arrhythmias; site stimulation; unipolar atrial electrograms; Anisotropic magnetoresistance; Computed tomography; Dogs; Electrodes; Propagation delay; Simultaneous localization and mapping; Test pattern generators; Testing; Veins; Wire;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society, 2003. Proceedings of the 25th Annual International Conference of the IEEE
ISSN
1094-687X
Print_ISBN
0-7803-7789-3
Type
conf
DOI
10.1109/IEMBS.2003.1279561
Filename
1279561
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