Determining tissue conductivity in tissue ablation by nanosecond pulsed electric fields

Bioelectrochemistry - Tập 143 - Trang 107949 - 2022
Edwin A. Oshin1,2, Siqi Guo1, Chunqi Jiang1,2
1Frank Reidy Research Center for Bioelectrics, Old Dominion University, Norfolk, VA, USA
2Department of Electrical and Computer Engineering, Old Dominion University, Norfolk, VA, USA

Tài liệu tham khảo

Kotnik, 2019, Membrane electroporation and electropermeabilization: mechanisms and models, Annu. Rev. Biophys., 48, 63, 10.1146/annurev-biophys-052118-115451 Davalos, 2005, Tissue ablation with irreversible electroporation, Ann. Biomed. Eng., 33, 223, 10.1007/s10439-005-8981-8 Guenther, 2015, Electrical breakdown in tissue electroporation, Biochem. Biophys. Res. Commun., 467, 736, 10.1016/j.bbrc.2015.10.072 Wagstaff, 2016, Irreversible electroporation: state of the art, Onco. Targets Ther., 9, 2437, 10.2147/OTT.S88086 Garcia, 2011, Non-Thermal Irreversible Electroporation (NTIRE) and adjuvant fractionated radiotherapeutic multimodal therapy for intracranial malignant glioma in a canine patient, Technol. Cancer Res. Treat., 10, 73, 10.7785/tcrt.2012.500181 Rubinsky, 2007, Irreversible electroporation in medicine, Technol. Cancer Res. Treat., 6, 255, 10.1177/153303460700600401 Toepfl, 2006, Review: potential of high hydrostatic pressure and pulsed electric fields for energy efficient and environmentally friendly food processing, Food Rev. Int., 22, 405, 10.1080/87559120600865164 Raso, 2016, Recommendations guidelines on the key information to be reported in studies of application of PEF technology in food and biotechnological processes, Innov. Food Sci. Emerg. Technol., 37, 312, 10.1016/j.ifset.2016.08.003 Garcia, 2011, Electrical conductivity changes during irreversible electroporation treatment of brain cancer, Conf. Proc. IEEE Eng. Med. Biol. Soc., 739 Ivorra, 2009, In vivo electrical conductivity measurements during and after tumor electroporation: conductivity changes reflect the treatment outcome, Phys. Med. Biol., 54, 49, 10.1088/0031-9155/54/19/019 Dunki-Jacobs, 2014, Evaluation of resistance as a measure of successful tumor ablation during irreversible electroporation of the pancreas, J Am Coll Surg., 218, 179, 10.1016/j.jamcollsurg.2013.10.013 Stampfli, 1957, Reversible electrical breakdown of the excitable membrane of a Ranvier node, An. da Acad. Bras. De Cienc., 30, 57 Wang, 2006, Study on fish embryo responses to the treatment of cryoprotective chemicals using impedance spectroscopy, Eur. Biophys. J., 35, 224, 10.1007/s00249-005-0027-5 Glahder, 2005, Transfection of HeLa-cells with pEGFP plasmid by impedance power-assisted electroporation, Biotechnol. Bioeng., 92, 267, 10.1002/bit.20426 Pavlin, 2005, Effect of cell electroporation on the conductivity of a cell suspension, Biophys. J., 88, 4378, 10.1529/biophysj.104.048975 Suselbeck, 2005, Intravascular electric impedance spectroscopy of atherosclerotic lesions using a new impedance catheter system, Basic Res. Cardil., 100, 446, 10.1007/s00395-005-0527-6 Dev, 2003, Electric field of a six-needle array electrode used in drug and DNA delivery in vivo: analytical versus numerical solution, IEEE Trans. Bio-Med. Eng., 50, 1296, 10.1109/TBME.2003.818467 Davalos, 2015, Implications and considerations of thermal effects when applying irreversible electroporation tissue ablation therapy, The Prostate, 75, 1114, 10.1002/pros.22986 Zhao, 2018, Ablation outcome of irreversible electroporation on potato monitored by impedance spectrum under multi-electrode system, BioMed Eng. OnLine, 17, 126, 10.1186/s12938-018-0562-9 Garner, 2007, Ultrashort electric pulse induced changes in cellular dielectric properties, Biochem. Biophys. Res. Commun., 362, 139, 10.1016/j.bbrc.2007.07.159 Davalos, 2002, A feasibility study for electrical impedance tomography as a means to monitor tissue electroporation for molecular medicine, IEEE Trans. Bio-Med. Eng., 49, 400, 10.1109/10.991168 Galindo, 2008, Pulsed electric field reduces the permeability of potato cell wall, Bioelectromagnetics, 29, 296, 10.1002/bem.20394 Faridnia, 2015, Innovative approach to determine the effect of pulsed electric fields on the microstructure of whole potato tubers: use of cell viability, microscopic images and ionic leakage measurements, Food Res. Int., 77, 556, 10.1016/j.foodres.2015.08.028 Boussetta, 2013, Cold electroporation in potato tissue induced by pulsed electric field, J. Food Eng., 115, 232, 10.1016/j.jfoodeng.2012.10.019 Yao, 2017, Irreversible electroporation ablation area enhanced by synergistic high- and low-voltage pulses, PLoS One, 12, 10.1371/journal.pone.0173181 Guo, 2018, Nano-pulse stimulation induces potent immune responses, eradicating local breast cancer while reducing distant metastases, Int. J. Cancer, 142, 629, 10.1002/ijc.31071 Beebe, 2018, Nanopulse Stimulation (NPS) induces tumor ablation and immunity in orthotopic 4T1 mouse breast cancer: a review, Cancers (Basel), 10, 97, 10.3390/cancers10040097 Deipolyi, 2014, Irreversible electroporation: evolution of a laboratory technique in interventional oncology, Diagn. Interv. Radiol., 20, 147 Bhonsle, 2015, Mitigation of impedance changes due to electroporation therapy using bursts of high frequency bipolar pulses, Biomed Eng Online., 14, S3, 10.1186/1475-925X-14-S3-S3 Edelblute, 2017, Controllable moderate heating enhances the therapeutic efficacy of irreversible electroporation for pancreatic cancer, Sci. Rep., 7, 11767, 10.1038/s41598-017-12227-4 Edelblute, 2018, Moderate heat application enhances the efficacy of nanosecond pulse stimulation for the treatment of squamous cell carcinoma, Techno. Cancer Res. Treat., 17, 1 Schoenbach, 2008, A scaling law for bioelectric effects of nanosecond pulses,, Bioelectric Notes, 2, 1 CRC Handbook of Chemistry, and Physics, 70th Edition, Weast, R. C., Ed., CRC Press, Boca Raton, FL, 1989, p. D-221. Ivorra, 2003, Minimally invasive silicon probe for electrical impedance measurements in small animals, Biosensors Bioelectron., 391, 391, 10.1016/S0956-5663(03)00204-5 Paul, 2006 Gersing, 1998, Impedance spectroscopy on living tissue for determination of the state of organs, Bioelectrochem. Bioenerget., 45, 145, 10.1016/S0302-4598(98)00079-8 Y. Yang, B. Zhang, M. Moser, E. Zhang, W.J. Zhang, Analysis and Optimization of Determining Factors in Irreversible Electroporation for Large Ablation Zones Without Thermal Damage, 2017. Rossi, 2019, Mechanisms and immunogenicity of nsPEF-induced cell death in B16F10 melanoma tumors, Sci Rep., 9, 431, 10.1038/s41598-018-36527-5