A nonstationary model for high-temperature hyperthermic treatments is developed. The aim of this model is to describe the thermal propagation within a living tissue and to quantify its clinical effects as it regards the physiological status (necrosis) of a neoplastic body. Particular attention is turned to the description of the necrotic transition induced by heating. This leads to the introduction of a necrosis field and to an effective-medium approximation for the corresponding physiological status (vascularization, necrosis, etc.) of the exposed tissue. The resulting nonlinear, nonstationary model is applied to a multilayered spherical structure with a temperature-regulated implant, and to a clinical case of a solid liver tumor. Clinical data on the spatial extent of the necrotized region are in good agreement with model predictions.

Necrosis evolution during high-temperature hyperthermia through implanted heat sources / P., Badini; P., De Cupis; Gerosa, Giorgio; Giona, Massimiliano. - In: IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING. - ISSN 0018-9294. - 50:3(2003), pp. 305-315. [10.1109/tbme.2003.808812]

Necrosis evolution during high-temperature hyperthermia through implanted heat sources

GEROSA, Giorgio;GIONA, Massimiliano
2003

Abstract

A nonstationary model for high-temperature hyperthermic treatments is developed. The aim of this model is to describe the thermal propagation within a living tissue and to quantify its clinical effects as it regards the physiological status (necrosis) of a neoplastic body. Particular attention is turned to the description of the necrotic transition induced by heating. This leads to the introduction of a necrosis field and to an effective-medium approximation for the corresponding physiological status (vascularization, necrosis, etc.) of the exposed tissue. The resulting nonlinear, nonstationary model is applied to a multilayered spherical structure with a temperature-regulated implant, and to a clinical case of a solid liver tumor. Clinical data on the spatial extent of the necrotized region are in good agreement with model predictions.
2003
heat equation in living tissue; high-temperature hyperthermia; necrosis; solid-tumor therapy
01 Pubblicazione su rivista::01a Articolo in rivista
Necrosis evolution during high-temperature hyperthermia through implanted heat sources / P., Badini; P., De Cupis; Gerosa, Giorgio; Giona, Massimiliano. - In: IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING. - ISSN 0018-9294. - 50:3(2003), pp. 305-315. [10.1109/tbme.2003.808812]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/251277
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