Thermal modeling of lesion growth with radiofrequency ablation devices
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Open Access
- 6 August 2004
- journal article
- research article
- Published by Springer Nature in BioMedical Engineering OnLine
- Vol. 3 (1) , 27
- https://doi.org/10.1186/1475-925x-3-27
Abstract
Background: Temperature is a frequently used parameter to describe the predicted size of lesions computed by computational models. In many cases, however, temperature correlates poorly with lesion size. Although many studies have been conducted to characterize the relationship between time-temperature exposure of tissue heating to cell damage, to date these relationships have not been employed in a finite element model. Methods: We present an axisymmetric two-dimensional finite element model that calculates cell damage in tissues and compare lesion sizes using common tissue damage and iso-temperature contour definitions. The model accounts for both temperature-dependent changes in the electrical conductivity of tissue as well as tissue damage-dependent changes in local tissue perfusion. The data is validated using excised porcine liver tissues. Results: The data demonstrate the size of thermal lesions is grossly overestimated when calculated using traditional temperature isocontours of 42°C and 47°C. The computational model results predicted lesion dimensions that were within 5% of the experimental measurements. Conclusion: When modeling radiofrequency ablation problems, temperature isotherms may not be representative of actual tissue damage patterns.Keywords
This publication has 58 references indexed in Scilit:
- Finite-element analysis of hepatic multiple probe radio-frequency ablationIEEE Transactions on Biomedical Engineering, 2002
- Study of laser ablation in the in vivo rabbit brain with MR thermometryJournal of Magnetic Resonance Imaging, 2002
- Nonlinear finite-element analysis of the role of dynamic changes in blood perfusion and optical properties in laser coagulation of tissueIEEE Journal of Selected Topics in Quantum Electronics, 1996
- New Horizons in Catheter AblationJournal of Interventional Cardiology, 1995
- Rate process model for arterial tissue thermal damage: Implications on vessel photocoagulationLasers in Surgery and Medicine, 1994
- A computer simulation of radio-frequency ablation of the endocardiumIEEE Transactions on Biomedical Engineering, 1994
- A model for cell killing by continuous heatingMedical Hypotheses, 1993
- The Biophysics of Radiofrequency Catheter Ablation in the Heart: The Importance of Temperature MonitoringPacing and Clinical Electrophysiology, 1993
- A coaxial microwave applicator for transurethral hyperthermia of the prostateThe Prostate, 1993
- Theoretical Investigations of Laser Thermal Retinal InjuryHealth Physics, 1985