An insulated, water-cooled dipole, radiating in a biological tissue, is analyzed with a theoretical electromagnetic and thermal model. The SAR and temperature distributions are calculated taking into account the effect of the water flowing inside the applicator. The steady-state temperatures in a dissipative medium, interacting with the dipole, are evaluated for several thicknesses of the external casing, water temperatures and blood perfusions. A correct design of the external casing thickness and a proper choice of the temperature and flow velocity of water allows to control the wall temperature of the applicator within physiological limits. The influence of the blood perfusion on the temperature distribution is investigated.

Biffi Gentili, G., Gori, F., Leoncini, M. (1991). Electromagnetic and Thermal Models of a Water Cooled Dipole Radiating in a Biological Tissue. IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 38(1), 98-103.

Electromagnetic and Thermal Models of a Water Cooled Dipole Radiating in a Biological Tissue

GORI, FABIO;
1991-01-01

Abstract

An insulated, water-cooled dipole, radiating in a biological tissue, is analyzed with a theoretical electromagnetic and thermal model. The SAR and temperature distributions are calculated taking into account the effect of the water flowing inside the applicator. The steady-state temperatures in a dissipative medium, interacting with the dipole, are evaluated for several thicknesses of the external casing, water temperatures and blood perfusions. A correct design of the external casing thickness and a proper choice of the temperature and flow velocity of water allows to control the wall temperature of the applicator within physiological limits. The influence of the blood perfusion on the temperature distribution is investigated.
1991
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore ING-IND/10 - FISICA TECNICA INDUSTRIALE
English
Con Impact Factor ISI
Biffi Gentili, G., Gori, F., Leoncini, M. (1991). Electromagnetic and Thermal Models of a Water Cooled Dipole Radiating in a Biological Tissue. IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 38(1), 98-103.
Biffi Gentili, G; Gori, F; Leoncini, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/96127
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