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SHR Neuro Krebs Kardio Lipid Stoffw Microb

Eberl, AS; Plank, G; Manninger, M; Rohrer, U; Stix, L; Kurath-Koller, S; Zirlik, A; Scherr, D.
Biophysics and Clinical Effectiveness of Irreversible Electroporation for Catheter Ablation of Atrial Fibrillation.
J Cardiovasc Dev Dis. 2025; 12(6): Doi: 10.3390/jcdd12060218 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

Führende Autor*innen der Med Uni Graz
Eberl Anna-Sophie
Co-Autor*innen der Med Uni Graz
Kurath-Koller Stefan
Manninger-Wünscher Martin
Plank Gernot
Rohrer Ursula
Scherr Daniel
Zirlik Andreas
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Abstract:
Understanding the biophysics of electroporation-the mechanism by which pulsed electric fields achieve tissue ablation-is essential for advancing this emerging technology. In this review, we summarize key publications from past years to provide an overview of current knowledge and future perspectives. We discuss the fundamental principles of PFA at the cellular, physical, and technical levels, along with its potential benefits and limitations. A deeper understanding of these biophysical mechanisms and the parameters required to create durable lesions may contribute to improved clinical outcomes and drive future innovation.

Find related publications in this database (Keywords)
ablation
atrial fibrillation
biophysics
pulsed electric field
pulsed field ablation
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