Key result
RF ablation produces considerably larger lesions than same-sized hot-tip catheters in computer simulation models.
Why the study?
Parameters affecting lesion growth during radio-frequency ablation of the endocardium were not fully quantified, limiting guidance to maximize lesion size.
Computer simulations of endocardial RF ablation indicate that lesion dimensions can be optimized by modifying electrode size, voltage, and application duration.
Simulations should not yet alter clinical RF ablation parameters; leaves open need for in vivo validation of optimized lesions.
A computer simulation of radio-frequency (RF) ablation of the endocardium is performed. The objective is to quantify some of the parameters affecting lesion growth, and to obtain theoretical data which can be used as a guide to maximize the lesions obtained with the procedure. The model under consideration consists of a block of heart tissue with the catheter electrode making contact at a right angle on one side (endocardium) and a large grounded electrode on the other side. An RF electrical current flows between the electrodes, heating the tissue. The simulations provide information on the time evolution of the tissue temperature, lesion dimension and tissue resistance. A first set of calculations is based on an applied RF voltage that maintains the maximum tissue temperature at 100 degrees C. The results reveal that: 1) the lesions achievable by RF ablation are considerably larger than those obtained with a hot-tip catheter of the same size; 2) increasing the electrode radius enlarges the lesion because of an associated increase in contact surface area; 3) an increase in electrode length also enlarges the lesion because of the larger convective losses to the blood flow; 4) a large difference in temperature may exist between the electrode and the tissue because of the cooling effect of the blood flow; and 5) the lesions grow as long as power is applied. Other simulations in which the RF voltage is constant show that the lesions can be enlarged by lowering the applied voltage while increasing the duration. Agreement and discrepancies between the simulations and reported experimental results are identified.(ABSTRACT TRUNCATED AT 250 WORDS)
No takes yet. Share an insight, caveat, or question.
S. Labonté (1994) studied Radio-frequency ablation of the endocardium. Radio-frequency (RF) ablation vs. Hot-tip catheter was evaluated on Lesion dimension, tissue temperature, and tissue resistance. Computer simulations of radio-frequency ablation demonstrated that RF lesions are considerably larger than those obtained with a hot-tip catheter of the same size.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: