Argus F, Boyd B, Becker SM (2017) Electroporation of tissue and cells: a three-equation model of drug delivery. Comput Biol Med 84:226–234
Article CAS PubMed Google Scholar
Bolhassani A, Mohit E, Ghasemi N, Salehi M, Taghikhani M, Rafati S (2011) Enhancement of potent immune responses to HPV16 E7 antigen by using different vaccine modalities. B. M. C. Proceedings 5:19
Boyd B, Becker S (2016) Macroscopic modeling of in vivo drug transport in electroporated tissue. J Biomech Eng 138(3):031008–11
Campelo SN, Huang P-H, Buie CR, Davalos RV (2023) Recent advancements in electroporation technologies: from bench to clinic. Ann Rev Biomed Eng 25:77–100
Čorović S, Mir LM, Miklavčič D (2012) In vivo muscle electroporation threshold determination: realistic numerical models and in vivo experiments. J Membr Biol 245(9):509–520
Corović S, Lacković I, Sustaric P, Sustar T, Rodic T, Miklavčič D (2013) Modeling of electric field distribution in tissues during electroporation. Bio Med Eng OnLine 12(16):1–27
Davalos RV, Rubinsky B, Mir LM (2003) Theoretical analysis of the thermal effects during in vivo tissue electroporation. Bioelectrochemistry 61(1):99–107
Article CAS PubMed Google Scholar
Davalos RV, Mir LM, Rubinsky B (2005) Tissue ablation with irreversible electroporation. Ann Biomed Eng 33:223
Article CAS PubMed Google Scholar
Dermol-Černe J, Miklavčič D (2018) From cell to tissue properties-modeling skin electroporation with pore and local transport region formation. IEEE Trans Biomed Eng 65(2):458–468
Dermol-Černe J, Vidmar J, Ščančar J, Uršič K, Serša G, Miklavčič D (2018) Connecting the in vitro and in vivo experiments in electrochemotherapy - a feasibility study modeling cisplatin transport in mouse melanoma using the dual-porosity model. J Controlled Release 286:33–45
Dermol-Černe J, Pirc E, Miklavčič D (2020) Mechanistic view of skin electroporation-models and dosimetry for successful applications: an expert review. Exp Opin Drug Deliv 17(5):689–704
Garcia PA, Davalos RV, Miklavčič D (2014) A numerical investigation of the electric and thermal cell kill distributions in electroporation-based therapies in tissue. PLOS ONE 9(8):1–12
Goldberg E, Suárez C, Alfonso M, Marchese J, Soba A, Marshall G (2018) Cell membrane electroporation modeling: a multiphysics approach. Bioelectrochemistry 124:28–39
Article CAS PubMed Google Scholar
Granot Y, Rubinsky B (2008) Mass transfer model for drug delivery in tissue cells with reversible electroporation. Int J Heat Mass Trans 51(23):5610–5616
Huang T, Wen X, Liang Y, Liu X, Zhao J, Long X (2024) Irreversible electroporation-induced inflammation facilitates neutrophil-mediated drug delivery to enhance pancreatic cancer therapy. Mol Pharm 21(4):1998–2011
Article CAS PubMed Google Scholar
Jiang C, Davalos RV, Bischof JC (2015) A review of basic to clinical studies of irreversible electroporation therapy. IEEE Trans Biomed Eng 62(1):4–20
Kotnik T, Rems L, Tarek M, Miklavčič D (2019) Membrane electroporation and electropermeabilization: mechanisms and models. Ann Rev Biophys 48(1):63–91
Krassowska W, Filev PD (2007) Modeling electroporation in a single cell. Biophys J 92(2):404–417
Article CAS PubMed Google Scholar
Lacković I, Magjarević R, Miklavčič D (2010) Incorporating electroporation-related conductivity changes into models for the calculation of the electric field distribution in tissue. XII Mediterranean Conference on Medical and Biological Engineering and Computing 2010. Springer, Berlin, pp 695–698
Mahnič-Kalamiza S, Miklavčič D, Vorobiev E (2014) Dual-porosity model of solute diffusion in biological tissue modified by electroporation. Biochimica et Biophysica Acta BBA - Biomembranes 1838(7):1950–1966
Mondal N, Dalal D (2023) Modelling of reversible tissue electroporation and its thermal effects in drug delivery. European J Pharm Biopharm 190:47–57
Mondal N, Chakravarty K, Dalal DC (2021) A mathematical model of drug dynamics in an electroporated tissue. Math Biosci Eng 18(6):8641–8660
Mondal N, Yadav K, Dalal D (2023) Enhanced drug uptake on application of electroporation in a single-cell model. J Membr Biol. https://doi.org/10.1007/s00232-023-00283-z
Pavlin M, Miklavčič D (2003) Effective conductivity of a suspension of permeabilized cells: a theoretical analysis. Biophys J 85(2):719–729
Article CAS PubMed PubMed Central Google Scholar
Pavlin M, Kandu SM, Rebersek M, Pucihar G, Hart FX, Mag-jareviccacute R, Miklavčič D (2005) Effect of cell electroporation on the conductivity of a cell suspension. Biophys J 88(6):4378–4390
Article CAS PubMed PubMed Central Google Scholar
Polajžer T, Miklavčič D (2023) Immunogenic cell death in electroporation-based therapies depends on pulse waveform characteristics. Vaccines 11(6):1036
Article PubMed PubMed Central Google Scholar
Pucihar G, Krmelj J, Reberšek M, Napotnik TB, Miklavčič D (2011) Equivalent pulse parameters for electroporation. IEEE Trans Biomed Eng 58(11):3279–3288
Rubinsky B (2007) Irreversible electroporation in medicine. Technol Cancer Res Treat 6(4):255–260
Satkauskas S, Bureau MF, Puc M, Mahfoudi A, Scherman D, Miklavčič D, Mir ML (2002) Mechnisms of in vivo dna electrotransfer: Respective contributions of cell electropermeabilization and dna electrophoresis. Mol Ther 5:133–140
Article CAS PubMed Google Scholar
Sel D, Cukjati D, Batiuskaite D, Slivnik T, Mir LM, Miklavčič D (2005) Sequential finite element model of tissue electropermeabilization. IEEE Trans Biomed Eng 52(5):816–827
Weaver JC (2003) Electroporation of biological membranes from multicellular to nano scales. IEEE Tran Dielectr Electr Insulation 10:754–768
Widera G, Austin M, Rabussay D, Goldbeck C, Barnett SW, Chen M, Leung L, Otten GR, Thudium K, Selby MJ et al (2000) Increased DNA vaccine delivery and immunogenicity by electroporation in vivo. J Immunol 164(9):4635–4640
Article CAS PubMed Google Scholar
Yarmush ML, Golberg A, Serša G, Kotnik T, Miklavčič D (2014) Electroporation-based technologies for medicine: principles, applications, and challenges. Ann Rev Biomed Eng 16:295–320
Zorec B, Becker S, Rebersek M, Miklavčič D, Pavselj N (2013) Skin electroporation for transdermal drug delivery: the influence of the order of different square wave electric pulses. Int J Pharm 457(1):214–223
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