High-frequency irreversible electroporation for cardiac ablation using an asymmetrical waveform

Publication date

2019-06-20

Authors

van Es, RenéORCID 0000-0001-9950-4388
Konings, Maurits KISNI 0000000393037584
du Pré, Bastiaan C.
Neven, KGEJISNI 0000000387508941
Van Wessel, Harry
van Driel, Vincent J H M
Westra, Albert HISNI 000000039552241X
Doevendans, PieterISNI 0000000110574516
Wittkampf, Fred H. M.ISNI 0000000035769777

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Abstract

Background: Irreversible electroporation (IRE) using direct current (DC) is an effective method for the ablation of cardiac tissue. A major drawback of the use of DC-IRE, however, are two problems: requirement of general anesthesia due to severe muscle contractions and the formation of bubbles containing gaseous products from electrolysis. The use of high-frequency alternating current (HF-IRE) is expected to solve both problems, because HF-IRE produces little to no muscle spasms and does not cause electrolysis. Methods: In the present study, we introduce a novel asymmetric, high-frequency (aHF) waveform for HF-IRE and present the results of a first, small, animal study to test its efficacy. Results: The data of the experiments suggest that the aHF waveform creates significantly deeper lesions than a symmetric HF waveform of the same energy and frequency (p = 0.003). Conclusion: We therefore conclude that the use of the aHF enhances the feasibility of the HF-IRE method.

Keywords

Ablation Techniques/methods, Animals, Arrhythmias, Cardiac/physiopathology, Electric Conductivity, Electroporation/methods, Myocardial Contraction, Swine, Radiological and Ultrasound Technology, Biomaterials, Biomedical Engineering, Radiology Nuclear Medicine and imaging, Journal Article

Citation

Van Es, R, Konings, M K, Du Pré, B C, Neven, K, Van Wessel, H, Van Driel, V J H M, Westra, A H, Doevendans, P A F & Wittkampf, F H M 2019, 'High-frequency irreversible electroporation for cardiac ablation using an asymmetrical waveform', BioMedical Engineering Online, vol. 18, no. 1, 75, pp. 75. https://doi.org/10.1186/s12938-019-0693-7