Numerical modelling challenges for clinical electroporation ablation technique of liver tumors
SEROR, Olivier
Université Paris 13 [UP13]
Centre de Recherche des Cordeliers [CRC (UMR_S_1138 / U1138)]
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Université Paris 13 [UP13]
Centre de Recherche des Cordeliers [CRC (UMR_S_1138 / U1138)]
SEROR, Olivier
Université Paris 13 [UP13]
Centre de Recherche des Cordeliers [CRC (UMR_S_1138 / U1138)]
< Reduce
Université Paris 13 [UP13]
Centre de Recherche des Cordeliers [CRC (UMR_S_1138 / U1138)]
Language
en
Article de revue
This item was published in
Mathematical Modelling of Natural Phenomena. 2020-02-28, vol. 15
EDP Sciences
English Abstract
Electroporation ablation is a promising non surgical and minimally invasive technique of tumor ablation, for which no monitoring is currently available. In this paper, we present the recent advances and challenges on the ...Read more >
Electroporation ablation is a promising non surgical and minimally invasive technique of tumor ablation, for which no monitoring is currently available. In this paper, we present the recent advances and challenges on the numerical modeling of clinical electroporation ablation of liver tumors. In particular, we show that a nonlinear static electrical model of tissue combined with clinical imaging can give crucial information of the electric field distribution in the clinical configuration. We conclude the paper by presenting some important questions that have to be addressed for an effective impact of computational modeling in clinical practice of electroporation ablation. Mathematics Subject Classification. 35J15, 35J87, 92B.Read less <
English Keywords
Nonlinear electrical tissue mode
Clinical electroporation ablation
Computational tissue electroporation
ANR Project
Initiative d'excellence de l'Université de Bordeaux - ANR-10-IDEX-0003
Translational Research and Advanced Imaging Laboratory - ANR-10-LABX-0057
Translational Research and Advanced Imaging Laboratory - ANR-10-LABX-0057
Origin
Hal imported