REFERENCES
- [1] Scott Gazelle, G. and Nahum Goldberg, S., “Luigi Solbiati, Tito Livraghi, Tumor Ablation with Radiofrequency Energy,” Radiology Vol. 217, pp. 633646 (2000). doi: 10.1148/radiology.217.3.r00dc 26633
- [2] Lee, J. M., Kim, Y. K., Kim, S. W., Han, J. K., Kim, S. H. and Choi, B. I., “Combined Radiofrequency Ablation and Acetic Acid Hypertonic Saline Solution Instillation: An In Vivo Study of Rabbit Liver,” Korean J Radiol, Vol. 5, pp. 3138 (2004). doi: 10.3348/kjr.2004. 5.1.31
- [3] Nahum Goldberg, S., Scott Gazelle, G., Halpern, E. R., Rittman, W. J., Mueller, P. R. and Rosenthal, D. I., “Radiofrequency Tissue Ablation: Importance of Local Temperature Along the Electrode Tip Exposure in Determining Lesion Shape and Size,” Acad Radiol, Vol. 3, pp. 212218 (1996). doi: 10.1016/S1076-6332 (96)80443-0
- [4] Rosenthal, D. I., Hornicek, F. J., Torriani, M., Gebhardt, M. C. and Mankin, H. J., “Osteoid Osteoma: Percutaneous Treatment with Radiofrequency Energy,” Radiology, Vol. 229, 171175 (2003). doi: 10.1148/radiol. 2291021053
- [5] Lencioni, R. A., Allgaier, H. P., Cioni, D., et al., “Small Hepatocellular Carcinoma in Cirrhosis: Randomized Comparison of Radio-frequency Thermal Ablation Versus Percutaneous Ethanol Injection,” Radiology, Vol. 228, pp. 235240 (2003). doi: 10.1148/radiol.228102 0718
- [6] Akeboshi, M., Yamakado, K., Nakatsuka, A., et al., “Percutaneous Radiofrequency Ablation of Lung Neoplasms: Initial Therapeutic Response,” J Vasc Interv Radiol, Vol. 15, pp. 463470 (2004). doi: 10.1097/01. RVI.0000126812.12853.77
- [7] Hwang, J. J., Walther, M. M., Pautler, S. E., et al., “Radio Frequency Ablation Of Small Renal Tumors: Intermediate Results,” J Urol, Vol. 171, pp. 18141818 (2004). doi: 10.1097/01.ju.0000119905.72574.de
- [8] Lin, S.-M., “Local Ablation for Hepatocellular Carcinoma in Taiwan,” Liver Cancer, Vol. 2, pp. 7383 (2013). doi: 10.1159/000315237
- [9] Kosari, K., Gomes, M., Hunter, D., Hess, D. J., Greeno, E. and Sielaff, T. D., “Local, Intrahepatic and Systemic Recurrence Patterns after Radiofrequency Ablation of Hepatic Malignancies,” J Gastrointest Surg, Vol. 6, pp. 255263 (2002). doi: 10.1016/S1091-255X(02)00002-1
- [10] Kuvshinoff, B. W. and Ota, D. M., “Radiofrequency Ablation of Liver Tumors: Influence of Technique and Tumor Size,” Surgery, Vol. 132, pp. 605611 (2002). doi: 10.1067/msy.2002.127545
- [11] Dodd, G. D. 3rd, Frank, M. S., Aribandi, M., Chopra, S. and Chintapalli, K. N., “Radiofrequency Thermal Ablation: Computer Analysis of the Size of the Thermal Injury Created by Overlapping Ablations,” AJR, Vol. 177, pp. 777782 (2001). doi: 10.2214/ajr.177.4. 1770777
- [12] Laeseke, P. F., Frey, T. M., Brace, C. L., Sampson, L. A., Winter, T. C., Ketzler, J. R. and Lee, F. T., “Multiple-electrode Radiofrequency Ablation of Hepatic Malignancies: Initial Clinical Experience,” AJR, Am. J. Roentgenol, Vol. 188, pp. 14851494 (2007). doi: 10. 2214/AJR.06.1004
- [13] Goldberg, S. N., Solbiati, L., Hahn, P. F., et al., Largevolume Tissue Ablation with Radio Frequency by Using a Clustered, Internally Cooled Electrode Technique: Laboratory and Clinical Experience in Liver Metastases,” Radiology, Vol. 209, pp. 371379 (1998). doi: 10.1148/radiology.209.2.9807561
- [14] Laeseke, P. F., Sampson, L. A., Haemmerich, D., Brace, C. L., Fine, J. P., Frey, T. M., Winter III, T. C., Lee, F. T., “Multiple-Electrode Radiofrequency Ablation Creates Confluent Areas of Necrosis: In Vivo Porcine Liver Results,” Radiology, Vol. 241, No. 1, pp. 116124 (2006). doi: 10.1148/radiol.2411051271
- [15] Solazzo, S. A., Liu, Z., Lobo, S. M., Ahmed, M., Hines-Peralta, A. U., Lenkinski, R. E. and Goldberg, S. N., “Radiofrequency Ablation: Importance of Background Tissue Electrical Conductivity an Agar Phantom and Computer Modeling Study,” Radiology, Vol. 236, pp. 495502 (2005). doi: 10.1148/radiol.236204 0965
- [16] Lobo, S. M., Liu, Z. J., Yu, N. C., Humphries, S., Ahmed, M., Cosman, E. R., Lenkinski, R. E., Goldberg, W. and Goldberg, S. N., “RF Tumour Ablation: Computer Simulation and Mathematical Modelling of the Effects of Electrical and Thermal Conductivity,” Int J Hyperthermia, Vol. 21, pp. 199213 (2005). doi: 10. 1080/02656730400001108
- [17] Haemmerich, D., Staelin, T., Tungjitkusolmun, S., Lee, Jr., F. T., Mahvi, D. M. and Webster, J. G., “Hepatic Bipolar Radio-Frequency Ablation between Separated Multiprong Electrodes,” IEEE Transactions On Biomedical Engineering, Vol. 48, No. 10 (2001). doi: 10. 1109/10.951517
- [18] Labonte, S., “A Computer Simulation of Radio-frequency Ablation of the Endocardium,” IEEE Trans Biomed Eng, Vol. 41, pp. 883890 (1994). doi: 10. 1109/10.312096
- [19] Labonte, S., “Numerical Model for Radio-frequency Ablation of the Endocardium and its Experimental Validation,” IEEE Trans Biomed Eng, Vol. 41, pp. 108 115 (1994). doi: 10.1109/10.284921
- [20] Vahid Shahidi, A. and Savard, P., “A Finite Element Model for Radiofrequency Ablation of the Myocardium,” IEEE Transactions On Biomedical Engineering, Vol. 41, No. 10 (1994). doi: 10.1109/10.324528
- [21] Scheinman, Ed., M. M., Catheter Ablation of Cardiac Arrhythmias, Boston: Martinus Nijhoff Publ. (1988).
- [22] Chang, I. A. and Nguyen, U. D., “Thermal Modeling of Lesion Growth with Radiofrequency Ablation Devices,” Biomed Eng Online, Vol. 3, p. 27 (2004). doi: 10.1109/TBME.2004.827545
- [23] Chang, I., “Finite Element Analysis of Hepatic Radiofrequency Ablation Probes Using Temperature- Dependent Electrical Conductivity,” Biomed Eng Online, Vol. 2, p. 12 (2003).
- [24] Huang, H.-W., “Influence of Blood Vessel on the Thermal Lesion Formation during Radiofrequency Ablation for Liver Tumors,” Med. Phys., Vol. 40, No. 7, (2013). doi: 10.1118/1.4811135
- [25] Huang, H.-W., Liauh, C.-T., Chou, C.-Y., Shih, T.-C. and Lin, W.-L., “A Fast Adaptive Power Scheme Based on Temperature Distribution and Convergence Value for Optimal Hyperthermia Treatment,” Appl. Therm. Eng., Vol. 37, pp. 103111 (2012). doi: 10.1016/j.appl thermaleng.2011.11.003
- [26] Huang, H.-W., Liauh, C.-T., Horng, T.-L., Shih, T.-C., Chiang, C.-F. and Lin, W.-L., “Effective Heating for Tumors with Thermally Significant Blood Vessels during Hyperthermia Treatment,” Appl. Therm. Eng., Vol. 50, pp. 837847 (2013). doi: 10.1016/j.applthermaleng. 2012.07.018
- [27] Tungjitkusolmun, S., Woo, E. J., Cao, H., Tsai, J.-Z., Vorperian, V. R. and Webster, J. G., “Finite Element Analyses of Uniform Current Density Electrodes for Radio-frequency Cardiac Ablation,” IEEE Trans. Biomed. Eng., Vol. 47, No. 1, pp. 3240 (2000). doi: 10.1109/ 10.817617
- [28] “Cool-tipTM RF Ablation System,” Retrieved 21 May (2013) (Available URL: http://www.cool-tiprf.com/ 4minute.html).
- [29] Lobo, S. M., Afzal, K. S., Ahmed, M., Kruskal, J. B., Lenkinski, R. E. and Goldberg, S. N., “Radiofrequency Ablation: Modeling the Enhanced Temperature Response to Adjuvant NaCl Pretreatment,” Radiology, Vol. 230, pp. 175182 (2004). doi: 10.1148/radiol.230 1021512
- [30] McGahan, J. P. and Dodd, III, G. D., “Radiofrequency Ablation of Liver Tumors: Current Status,” AJR, Am. J. Roentgenol., Vol. 176, pp. 316 (2001). doi: 10.2214/ ajr.176.1.1760003
- [31] Goldberg, S. N., Gazelle, G. S. and Mueller, P. R., “Thermal Ablation Therapy for Focal Malignancy: A Unified Approach to Underlying Principles, Techniques and Diagnostic Imaging Guidance,” AJR, Am. J. Roentgenol., Vol. 174, pp. 323331 (2000). doi: 10. 2214/ajr.174.2.1740323
- [32] Lapidus, L. and Pinder, G. F., Numerical Solution of Partial Differential Equations in Science and Engineering (Wiley-Interscience, New York) (1982).
- [33] Chen, Z.-P., Roemer, R. B. and Cetas, T. C., “Three-dimensional Simulations of Ferromagnetic Implant Hyperthermia,” Med. Phys., Vol. 19, No. 4, pp. 989997 (1992). doi: 10.1118/1.596787
- [34] Huang, H. W., “Simulation of Large Vessels in Hyperthermia Therapy,” M. S. Thesis, University of Arizona, Tucson, AZ (1992).
- [35] Chen, Z. P., “A Three-dimensional Treatment Planning Program for Hyperthermia,” Ph.D. Dissertation, University of Arizona, Tucson, AZ (1989).
- [36] Huang, H.-W., Roemer, R. B. and Chen, Z. P., “A Counter Current Vascular Network Model of Heat Transfer in Tissues,” ASME J. Biomech. Eng., Vol. 118, pp. 120129 (1996). doi: 10.1115/1.2795937
- [37] Haemmerich, D. G., “Finite Element Modeling of Hepatic Radio Frequency Ablation,” Ph.D. Dissertation, University of Wisconsin, Madison (2001). doi: 10.1109/ TBME.2002.800790
- [38] Ebbini, E. S., Umemura, S.-I., Ibbini, M. and Cain, C. A., “A Cylindricalsection Ultrasound Phased-array Applicator for Hyperthermia Cancer Therapy,” IEEE Trans. Biomed. Eng., Vol. 35, pp. 561572 (1988). doi: 10. 1109/58.8034