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  4. Optimal applicator placement in hepatic radiofrequency ablation on the basis of rare data
 
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2010
Journal Article
Title

Optimal applicator placement in hepatic radiofrequency ablation on the basis of rare data

Abstract
In this paper, a numerical procedure to determine an optimal applicator placement for hepatic radiofrequency ablation incorporating uncertain material parameters is presented. The main focus is set on the treatment of subjective and rare data-based information. For this purpose, we employ the theory of fuzzy sets and model uncertain parameters as fuzzy quantities. While fuzzy modelling has been established in structural engineering in the recent past, it is novel in biomedical engineering. Incorporating fuzzy quantities within an optimisation task is basically innovative. In our context, fuzzy modelling allows us to determine an optimal applicator placement that maximises the therapy success under the given uncertainty conditions. The applicability of our method is demonstrated by means of an example case.
Author(s)
Kröger, T.
Pannier, S.
Kaliske, M.
Altrogge, I.
Graf, W.
Preusser, T.
Journal
Computer methods in biomechanics and biomedical engineering  
DOI
10.1080/10255840903317394
Language
English
Fraunhofer-Institut für Digitale Medizin MEVIS  
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