On a mathematical model for laser-induced thermotherapy

We study a mathematical model for laser-induced thermotherapy, a minimally invasive cancer treatment. The model consists of a diffusion approximation of the radiation transport equation coupled to a bio-heat equation and a model to describe the evolution of the coagulated zone. Special emphasis is l...

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Veröffentlicht in:Applied mathematical modelling 2010-12, Vol.34 (12), p.3831-3840
Hauptverfasser: Fasano, Antonio, Hömberg, Dietmar, Naumov, Dmitri
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container_title Applied mathematical modelling
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creator Fasano, Antonio
Hömberg, Dietmar
Naumov, Dmitri
description We study a mathematical model for laser-induced thermotherapy, a minimally invasive cancer treatment. The model consists of a diffusion approximation of the radiation transport equation coupled to a bio-heat equation and a model to describe the evolution of the coagulated zone. Special emphasis is laid on a refined model of the applicator device, accounting for the effect of coolant flow inside. Comparisons between experiment and simulations show that the model is able to predict the experimentally achieved temperatures reasonably well.
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source ScienceDirect Journals (5 years ago - present); EZB-FREE-00999 freely available EZB journals
subjects Accounting
Analytical and numerical techniques
Approximation
Bio-heat equation
Biological and medical sciences
Cancer therapy
Coagulation
Coolants
Evolution
Exact sciences and technology
Fundamental areas of phenomenology (including applications)
Heat transfer
Induced hyperthermia. Cryotherapy
Laser treatment
Mathematical analysis
Mathematical models
Medical sciences
Physics
Radiation transport
Treatment with physical agents
Treatment. General aspects
Tumors
title On a mathematical model for laser-induced thermotherapy
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