Why the study?
Does catheter contact geometry (depth and angle) affect lesion formation in radio-frequency cardiac catheter ablation?
Does catheter contact geometry (depth and angle) affect lesion formation in radio-frequency cardiac catheter ablation?
Catheter contact angle and penetration depth significantly affect lesion formation during radio-frequency ablation, highlighting the importance of geometric contact variables for ablation efficacy.
Acute angles with deep tips may enlarge lesions in animal models; leaves open whether contact optimization improves human ablation outcomes.
One factor which may be important for determining proper lesion creation during atrial ablation is catheter-endocardial contact. Little information is available that relates geometric contact, depth and angle, to ablation lesion formation. We present an electrothermal computer model of ablation that calculated lesion volume and temperature development over time. The Pennes bioheat equation was coupled to a quasistatic electrical problem to investigate the effect of catheter penetration depth, as well as incident catheter angle as may occur in practice. Biological experiments were performed to verify the modelling of electrical phenomena. Results show that for deeply penetrating tips, acute catheter angles reduced the rate of temperature buildup, allowing larger lesions to form before temperatures elevated excessively. It was also found that greater penetration did not lead to greater transmurality of lesions. We conclude that catheter contact angle plays a significant role in lesion formation, and the time course must be considered. This is clinically relevant because proper identification and prediction of geometric contact variables could improve ablation efficacy.
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Gallagher et al. (2013) studied this question.
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