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Can electroporation previous to radiofrequency hepatic ablation enlarge thermal lesion size? A feasibility study based on theoretical modelling and in vivo experiments

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Can electroporation previous to radiofrequency hepatic ablation enlarge thermal lesion size? A feasibility study based on theoretical modelling and in vivo experiments

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Trujillo Guillen, M.; Castellvi, Q.; Burdío, F.; Sánchez Velázquez, P.; Ivorra, A.; Andaluz, A.; Berjano, E. (2013). Can electroporation previous to radiofrequency hepatic ablation enlarge thermal lesion size? A feasibility study based on theoretical modelling and in vivo experiments. International Journal of Hyperthermia. 29(3):211-218. https://doi.org/10.3109/02656736.2013.777854

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Título: Can electroporation previous to radiofrequency hepatic ablation enlarge thermal lesion size? A feasibility study based on theoretical modelling and in vivo experiments
Autor: Trujillo Guillen, Macarena Castellvi, Quim Burdío, Fernando Sánchez Velázquez, Patricia Ivorra, Antoni Andaluz, Anna Berjano, Enrique
Entidad UPV: Universitat Politècnica de València. Instituto Universitario de Matemática Pura y Aplicada - Institut Universitari de Matemàtica Pura i Aplicada
Universitat Politècnica de València. Departamento de Matemática Aplicada - Departament de Matemàtica Aplicada
Universitat Politècnica de València. Departamento de Ingeniería Electrónica - Departament d'Enginyeria Electrònica
Fecha difusión:
Resumen:
Purpose: The aim of this study was to assess the feasibility of a hybrid ablative technique based on applying electroporation (EP) pulses just before conducting radiofrequency ablation (RFA). The rationale was that the ...[+]
Palabras clave: Tumour ablation , Radiofrequency ablation , In vivo model , Electroporation
Derechos de uso: Reserva de todos los derechos
Fuente:
International Journal of Hyperthermia. (issn: 0265-6736 )
DOI: 10.3109/02656736.2013.777854
Editorial:
Informa Healthcare
Versión del editor: http://dx.doi.org/10.3109/02656736.2013.777854
Código del Proyecto:
info:eu-repo/grantAgreement/MICINN//TEC2010-17285/ES/METODOS Y HERRAMIENTAS PARA LA ELECTROPORACION IN VIVO/
...[+]
info:eu-repo/grantAgreement/MICINN//TEC2010-17285/ES/METODOS Y HERRAMIENTAS PARA LA ELECTROPORACION IN VIVO/
info:eu-repo/grantAgreement/EC/FP7/256376/EU/Tools and methods for in vivo electroporation/
info:eu-repo/grantAgreement/UPV//PAID-06-11-1988/
info:eu-repo/grantAgreement/UPV//INNOVA11-01- 5502/
info:eu-repo/grantAgreement/MINECO//TEC2011-27133-C02-01/ES/MODELADO TEORICO Y EXPERIMENTACION PARA TECNICAS ABLATIVAS BASADAS EN ENERGIA/
info:eu-repo/grantAgreement/MINECO//TEC2011-27133-C02-02/ES/EXPERIMENTACION PARA TECNICAS ABLATIVAS BASADAS EN ENERGIA/
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Agradecimientos:
This work received financial support from the Spanish 'Plan Nacional de I + D + I del Ministerio de Ciencia e Innovacion' Grant nos. TEC2011-27133-C02-01,02 and TEC2010-17285, from the European Commission through the Marie ...[+]
Tipo: Artículo

References

Poon, R. T.-P., Fan, S.-T., Tsang, F. H.-F., & Wong, J. (2002). Locoregional Therapies for Hepatocellular Carcinoma: A Critical Review From the Surgeon’s Perspective. Annals of Surgery, 235(4), 466-486. doi:10.1097/00000658-200204000-00004

Solbiati, L., Livraghi, T., Goldberg, S. N., Ierace, T., Meloni, F., Dellanoce, M., … Gazelle, G. S. (2001). Percutaneous Radio-frequency Ablation of Hepatic Metastases from Colorectal Cancer: Long-term Results in 117 Patients. Radiology, 221(1), 159-166. doi:10.1148/radiol.2211001624

Ahmed, M., Brace, C. L., Lee, F. T., & Goldberg, S. N. (2011). Principles of and Advances in Percutaneous Ablation. Radiology, 258(2), 351-369. doi:10.1148/radiol.10081634 [+]
Poon, R. T.-P., Fan, S.-T., Tsang, F. H.-F., & Wong, J. (2002). Locoregional Therapies for Hepatocellular Carcinoma: A Critical Review From the Surgeon’s Perspective. Annals of Surgery, 235(4), 466-486. doi:10.1097/00000658-200204000-00004

Solbiati, L., Livraghi, T., Goldberg, S. N., Ierace, T., Meloni, F., Dellanoce, M., … Gazelle, G. S. (2001). Percutaneous Radio-frequency Ablation of Hepatic Metastases from Colorectal Cancer: Long-term Results in 117 Patients. Radiology, 221(1), 159-166. doi:10.1148/radiol.2211001624

Ahmed, M., Brace, C. L., Lee, F. T., & Goldberg, S. N. (2011). Principles of and Advances in Percutaneous Ablation. Radiology, 258(2), 351-369. doi:10.1148/radiol.10081634

Nikfarjam, M., Muralidharan, V., & Christophi, C. (2005). Mechanisms of Focal Heat Destruction of Liver Tumors. Journal of Surgical Research, 127(2), 208-223. doi:10.1016/j.jss.2005.02.009

Burdio, F., Mulier, S., Navarro, A., Figueras, J., Berjano, E., Poves, I., & Grande, L. (2008). Influence of approach on outcome in radiofrequency ablation of liver tumors. Surgical Oncology, 17(4), 295-299. doi:10.1016/j.suronc.2008.03.002

Marty, M., Sersa, G., Garbay, J. R., Gehl, J., Collins, C. G., Snoj, M., … Mir, L. M. (2006). Electrochemotherapy – An easy, highly effective and safe treatment of cutaneous and subcutaneous metastases: Results of ESOPE (European Standard Operating Procedures of Electrochemotherapy) study. European Journal of Cancer Supplements, 4(11), 3-13. doi:10.1016/j.ejcsup.2006.08.002

Davalos, R. V., Mir, L. M., & Rubinsky, B. (2005). Tissue Ablation with Irreversible Electroporation. Annals of Biomedical Engineering, 33(2), 223-231. doi:10.1007/s10439-005-8981-8

Sers ̌a, G., C ̌emaz ̌ar, M., Parkins, C. S., & Chaplin, D. J. (1999). Tumour blood flow changes induced by application of electric pulses. European Journal of Cancer, 35(4), 672-677. doi:10.1016/s0959-8049(98)00426-2

Ramirez, L., Orlowski, S., An, D., Bindoula, G., Dzodic, R., Ardouin, P., … Mir, L. (1998). Electrochemotherapy on liver tumours in rabbits. British Journal of Cancer, 77(12), 2104-2111. doi:10.1038/bjc.1998.354

Bellard, E., Markelc, B., Pelofy, S., Le Guerroué, F., Sersa, G., Teissié, J., … Golzio, M. (2012). Intravital microscopy at the single vessel level brings new insights of vascular modification mechanisms induced by electropermeabilization. Journal of Controlled Release, 163(3), 396-403. doi:10.1016/j.jconrel.2012.09.010

Berjano, E. J., Burdío, F., Navarro, A. C., Burdío, J. M., Güemes, A., Aldana, O., … Gregorio, M. A. de. (2006). Improved perfusion system for bipolar radiofrequency ablation of liver: preliminary findings from a computer modeling study. Physiological Measurement, 27(10), N55-N66. doi:10.1088/0967-3334/27/10/n03

Pätz, T., Kröger, T., & Preusser, T. (2009). Simulation of Radiofrequency Ablation Including Water Evaporation. World Congress on Medical Physics and Biomedical Engineering, September 7 - 12, 2009, Munich, Germany, 1287-1290. doi:10.1007/978-3-642-03882-2_341

Trujillo, M., Alba, J., & Berjano, E. (2012). Relationship between roll-off occurrence and spatial distribution of dehydrated tissue during RF ablation with cooled electrodes. International Journal of Hyperthermia, 28(1), 62-68. doi:10.3109/02656736.2011.631076

Ivorra, A., & Rubinsky, B. (2007). In vivo electrical impedance measurements during and after electroporation of rat liver. Bioelectrochemistry, 70(2), 287-295. doi:10.1016/j.bioelechem.2006.10.005

Ivorra, A., Mir, L. M., & Rubinsky, B. (2009). Electric Field Redistribution due to Conductivity Changes during Tissue Electroporation: Experiments with a Simple Vegetal Model. World Congress on Medical Physics and Biomedical Engineering, September 7 - 12, 2009, Munich, Germany, 59-62. doi:10.1007/978-3-642-03895-2_18

Lacković, I., Magjarević, R., & Miklavčič, D. (2010). Incorporating Electroporation-related Conductivity Changes into Models for the Calculation of the Electric Field Distribution in Tissue. IFMBE Proceedings, 695-698. doi:10.1007/978-3-642-13039-7_175

Sel, D., Cukjati, D., Batiuskaite, D., Slivnik, T., Mir, L. M., & Miklavcic, D. (2005). Sequential Finite Element Model of Tissue Electropermeabilization. IEEE Transactions on Biomedical Engineering, 52(5), 816-827. doi:10.1109/tbme.2005.845212

Gehl, J., Skovsgaard, T., & Mir, L. M. (2002). Vascular reactions to in vivo electroporation: characterization and consequences for drug and gene delivery. Biochimica et Biophysica Acta (BBA) - General Subjects, 1569(1-3), 51-58. doi:10.1016/s0304-4165(01)00233-1

Pennes, H. H. (1998). Analysis of Tissue and Arterial Blood Temperatures in the Resting Human Forearm. Journal of Applied Physiology, 85(1), 5-34. doi:10.1152/jappl.1998.85.1.5

Pearce, J., Panescu, D., & Thomsen, S. (2005). Simulation of diopter changes in radio frequency conductive keratoplasty in the cornea. Modelling in Medicine and Biology VI. doi:10.2495/bio050451

Yang, D., Converse, M. C., Mahvi, D. M., & Webster, J. G. (2007). Expanding the Bioheat Equation to Include Tissue Internal Water Evaporation During Heating. IEEE Transactions on Biomedical Engineering, 54(8), 1382-1388. doi:10.1109/tbme.2007.890740

Jo, B., & Aksan, A. (2010). Prediction of the extent of thermal damage in the cornea during conductive keratoplasty. Journal of Thermal Biology, 35(4), 167-174. doi:10.1016/j.jtherbio.2010.02.004

Abraham, J. P., & Sparrow, E. M. (2007). A thermal-ablation bioheat model including liquid-to-vapor phase change, pressure- and necrosis-dependent perfusion, and moisture-dependent properties. International Journal of Heat and Mass Transfer, 50(13-14), 2537-2544. doi:10.1016/j.ijheatmasstransfer.2006.11.045

Arata, M. A., Nisenbaum, H. L., Clark, T. W. I., & Soulen, M. C. (2001). Percutaneous Radiofrequency Ablation of Liver Tumors with the LeVeen Probe: Is Roll-off Predictive of Response? Journal of Vascular and Interventional Radiology, 12(4), 455-458. doi:10.1016/s1051-0443(07)61884-3

Berjano, E. J. (2006). BioMedical Engineering OnLine, 5(1), 24. doi:10.1186/1475-925x-5-24

Tungjitkusolmun, S., Woo, E. J., Cao, H., Tsai, J. Z., Vorperian, V. R., & Webster, J. G. (2000). Thermal—electrical finite element modelling for radio frequency cardiac ablation: Effects of changes in myocardial properties. Medical & Biological Engineering & Computing, 38(5), 562-568. doi:10.1007/bf02345754

Haemmerich, D., Chachati, L., Wright, A. S., Mahvi, D. M., Lee, F. T., & Webster, J. G. (2003). Hepatic radiofrequency ablation with internally cooled probes: effect of coolant temperature on lesion size. IEEE Transactions on Biomedical Engineering, 50(4), 493-500. doi:10.1109/tbme.2003.809488

Chang, I. A., & Nguyen, U. D. (2004). BioMedical Engineering OnLine, 3(1), 27. doi:10.1186/1475-925x-3-27

Chang, S.-J., Yu, W.-J., Chang, C.-C., & Chen, Y.-H. (2010). 7 PROTEOMICS ANALYSIS OF MALE REPRODUCTIVE PHYSIOLOGY BY TOONA SINENSIS ROEM. Reproductive BioMedicine Online, 20, S3-S4. doi:10.1016/s1472-6483(10)62425-x

Beop-Min Kim, Jacques, S. L., Rastegar, S., Thomsen, S., & Motamedi, M. (1996). Nonlinear finite-element analysis of the role of dynamic changes in blood perfusion and optical properties in laser coagulation of tissue. IEEE Journal of Selected Topics in Quantum Electronics, 2(4), 922-933. doi:10.1109/2944.577317

Goldberg, S. N., Grassi, C. J., Cardella, J. F., Charboneau, J. W., Dodd, G. D., Dupuy, D. E., … Sacks, D. (2009). Image-guided Tumor Ablation: Standardization of Terminology and Reporting Criteria. Journal of Vascular and Interventional Radiology, 20(7), S377-S390. doi:10.1016/j.jvir.2009.04.011

Dos Santos, I., Haemmerich, D., Schutt, D., da Rocha, A. F., & Menezes, L. R. (2009). Probabilistic finite element analysis of radiofrequency liver ablation using the unscented transform. Physics in Medicine and Biology, 54(3), 627-640. doi:10.1088/0031-9155/54/3/010

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