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January 1, 2020International Journal of Hyperthermia48 citationsOpen Access

Computer simulation study on the effect of electrode–tissue contact force on thermal lesion size in cardiac radiofrequency ablation

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SYShengjie YanKGKaihao GuXWXiaomei Wu

Key Result

Increasing electrode-tissue contact force in cardiac radiofrequency ablation simulations increased lesion depth (3.17 × CF^0.14) and width (5.17 × CF^0.14) according to a power function.

Structured PICO

Does electrode-tissue contact force affect thermal lesion size in cardiac radiofrequency ablation?

P
Population
Computer model of cardiac tissue
I
Intervention
Cardiac radiofrequency ablation with varying electrode-tissue contact forces (2, 5, 10, 20, 30, and 40 g) with identical RF voltage and duration
C
Comparator
Different contact forces compared against each other
O
Outcome
Lesion size and features (depth, width, cross-section area, temperature distribution)surrogate

Computer simulation confirms that electrode-tissue contact force is a major determinant of RF lesion size, with lesion dimensions increasing as a power function of contact force.

Abstract

Purpose In cardiac radiofrequency (RF) ablation, RF energy is often used to create a series of transmural lesions for blocking accessory conduction pathways. Electrode–tissue contact force (CF) is one of the key determinants of lesion formation during RF ablation. Low electrode–tissue CF is associated with ineffective RF lesion formation, whereas excessive CF may increase the risk of steam pop and perforation. By using finite element analysis, we studied lesion size and features at different values of electrode–tissue CF in cardiac RF ablation.Materials and methods A computer-model-coupled electrode–tissue CF field, RF electric field, and thermal field were developed to study temperature distribution and lesion dimensions in cardiac tissue subjected to CF of 2, 5, 10, 20, 30, and 40 g with identical RF voltage and duration.Results Increasing CF was associated with an increase in lesion depth, width, and cross-section area. The lesion cross-section area exhibited a linear increase, and the lesion width was significantly greater than lesion depth under the identical ablation condition. The relationship between CF value and lesion size is a power function: Lesion Size = a × CFb (Lesion Depth = 3.17 × CF0.14 and Lesion Width = 5.17 × CF0.14).Conclusions This study confirmed that CF is a major determinant of RF lesion size and that electrode–tissue CF affects the amount of power dissipated in tissue. At a constant RF voltage and application time, RF lesion size increases as CF increases.

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Cite This Study

Yan et al. (2020) studied Cardiac radiofrequency ablation. Electrode-tissue contact force was evaluated on Lesion size (depth, width, and cross-section area). Increasing electrode-tissue contact force in cardiac radiofrequency ablation simulations increased lesion depth (3.17 × CF^0.14) and width (5.17 × CF^0.14) according to a power function.

synapsesocial.com/papers/6a20dbb6a4e184e828180344https://doi.org/10.1080/02656736.2019.1708482
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