TY - JOUR
T1 - Electroporation and its Relevance for Cardiac Catheter Ablation
AU - Wittkampf, Fred H M
AU - van Es, René
AU - Neven, Kars
N1 - Publisher Copyright:
© 2018 American College of Cardiology Foundation
PY - 2018/8/1
Y1 - 2018/8/1
N2 - Irreversible electroporation can be used as a nonthermal energy source to ablate tissue. Cardiac catheter ablation by irreversible electroporation may be a safe and effective alternative for thermal ablation techniques such as radiofrequency or cryoablation. Total applied current, not delivered power (watts), energy (joules), or voltage, is the parameter that most directly relates to the local voltage gradient that causes electroporation. Electroporation can be achieved with various modalities: direct current, alternating current, pulsed direct current, or any combination of these. Experimental cardiac and noncardiac studies have demonstrated tissue specificity with survival of arteries and nerves in large lesions. In addition, porcine data suggest that application inside a pulmonary vein does not lead to pulmonary vein stenosis and that the esophagus is remarkably insensitive to electroporation. Therefore, irreversible electroporation is a very promising technique for cardiac catheter ablation and especially for electrical pulmonary vein isolation.
AB - Irreversible electroporation can be used as a nonthermal energy source to ablate tissue. Cardiac catheter ablation by irreversible electroporation may be a safe and effective alternative for thermal ablation techniques such as radiofrequency or cryoablation. Total applied current, not delivered power (watts), energy (joules), or voltage, is the parameter that most directly relates to the local voltage gradient that causes electroporation. Electroporation can be achieved with various modalities: direct current, alternating current, pulsed direct current, or any combination of these. Experimental cardiac and noncardiac studies have demonstrated tissue specificity with survival of arteries and nerves in large lesions. In addition, porcine data suggest that application inside a pulmonary vein does not lead to pulmonary vein stenosis and that the esophagus is remarkably insensitive to electroporation. Therefore, irreversible electroporation is a very promising technique for cardiac catheter ablation and especially for electrical pulmonary vein isolation.
KW - atrial fibrillation
KW - catheter ablation
KW - electroporation
UR - http://www.scopus.com/inward/record.url?scp=85053846358&partnerID=8YFLogxK
U2 - 10.1016/j.jacep.2018.06.005
DO - 10.1016/j.jacep.2018.06.005
M3 - Review article
C2 - 30139498
SN - 2405-500X
VL - 4
SP - 977
EP - 986
JO - JACC: Clinical Electrophysiology
JF - JACC: Clinical Electrophysiology
IS - 8
ER -