Page 303 - Computational Modeling in Biomedical Engineering and Medical Physics
P. 303
292 Computational Modeling in Biomedical Engineering and Medical Physics
Morega, A.M., Sandoiu, A.M., Morega, M., 2015b. On the thermography mapping of anatomic media
with capillaries and larger vessels blood flow. In: IEEE International Conference on e-Health and
Bioengineering, EHB 2015, November 19 21, Iasi, Romania.
Morega, A.M., Dobre, A.A., Sandoiu, A.M., Morega, M., 2019. Numerical modeling of hemodynamic
heat transfer in hyperthermia tumor ablation. In: Proceedings of the Romanian Academy, Series A 17, 3,
2016, 259 266.
Mulier, S., Miao, Y., Mulier, P., Dupas, B., Pereira, P., de Baere, T., et al., 2005. Electrodes and multiple
electrode systems for radiofrequency ablation: a proposal for updated terminology. Eur. Radiol. 15,
798 808.
Murray, C.D., 1926. The physiological principle of minimum work: I. The vascular system and the cost
of blood volume. Proc. Nat. Acad. Sci. USA 12 (3), 207 214.
Napoli, A., 2013. MR-guided ultrasound offers noninvasive treatment for breast cancer. In: Radiological
Society of North America, News, December 4, 2013. ,https://www.sciencedaily.com/releases/2013/
12/131204091409.htm . .
NIH, National Cancer Institute. ,https://www.cancer.gov/about-cancer/treatment/types/surgery/
hyperthermia-fact-sheet.. Accessed in August 2020.
NIH, 2019. Your Kidneys and How They Work, National Institute of Health, National Institute of
Diabetes and Digestive and Kidney Diseases, U.S. Department of Health and Human Services.
,https://www.niddk.nih.gov/health-information/kidney-disease/kidneys-how-they-work.
(accessed January 2019).
NIH, National Cancer Institute, Hyperthermia in Cancer Treatment, Fact Sheet. ,http://www.cancer.
gov/cancertopics/factsheet/Therapy/hyperthermia . (reviewed 31.08.2011)
Nikawa, Y., 1995. Temperature depending SAR distribution in human body during hyperthermia treat-
ment. IEICE Trans. Electron. E78-C (8), August.
Nikfarjam, M., Muralidharan, V., Christophi, C., 2005a. Focal hyperthermia produces progressive tumor
necrosis independent of the initial thermal effects. J. Gastrointest. Surg. 9, 410 417.
Nikfarjam, M., Muralidharan, V., Christophi, C., 2005b. Mechanisms of focal heat destruction of liver
tumors. J. Surg. Res. 127, 208 223.
Osepchuk, J.M., Petersen, R.C., 2001. Safety and environmental issues. In: Golio, M. (Ed.), Modern
Microwave and RF Handbook. CRC Press, Boca Raton, FL, pp. 3.28 3.43.
Osteaux, M., Jeanmart, L. Kidney tumor vascularization: morphology and angiogenesis, a microangio-
graphic experimental study, In: Lohr, E. (Ed.), Renal and Adrenal Tumors, 1979, Springer-Verlag,
Berlin, Heidelberg, New York , pp. 69 77.
Overgaard, K., Overgaard, J., 1972. Investigations on the possibility of a thermic tumor therapy. I. Short-
wave treatment of a transplanted isologous mouse mammary carcinoma. Eur. J. Cancer 8, 65 78.
Pankhurst, Q.A., Connolly, J., Jones, S.K., Dobson, J., 2003. Applications of magnetic nanoparticles in
biomedicine. J. Appl. Phys. D: Appl. Phys. 36, 13.
Pennes, H.H., 1948. Analysis of tissue and arterial blood temperature in the resting human forearm. J.
Appl. Phys. 1, 93 122.
Petryk, A.A., Giustini, A.J., Ryan, P., Strawbridge, R.A., Hoopes, P.J., 2009. Energy based treatment of
tissue and assessment, V 25 26, 7181:71810N. In: Proceedings of SPIE, Progress in Biomedical
Optics and Imaging, San Jose, California, vol. 10, p. 21.
Peralta, C.A., Whooley, M.A., Ix, J.H., Shlipak, M.G., 2006. Kidney function and systolic blood pressure
new insights from Cystatin C: Data from the heart and soul study. Am. J. Hypertens. 19 (9),
939 946.
Pop, M., Molckovsky, A., Chin, L., Kolios, M.C., Jewett, M.A., Sherar, M.D., 2003. Changes in dielec-
tric properties at 460 kHz of kidney and fat during heating: importance for radio frequency thermal
therapy. Phys. Med. Biol. 48, 15.
Poulou, L.S., Botsa, E., Thanou, I., Ziakas, P.D., Thanos, L., 2015. Percutaneous microwave ablation vs
radiofrequency ablation in the treatment of hepatocellular carcinoma. World J. Hepatol. 7, 18 May.
Preda, S.A., 2019. The Therapy with High-Intensity Ultrasounds for the Ablation of Tumoral Formations,(in Romanian)
Diploma Project. The Faculty of Medical Engineering, University, “Politehnica” of Bucharest, Romania.