PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 21, 2008Journal of Cardiovascular Electrophysiology21 citationsOpen Access

Concurrent Application of Charge Using a Novel Circuit Prevents Heat‐Related Coagulum Formation During Radiofrequency Ablation

View Full Paper
BLBernard LimKVKalpathi L. VenkatachalamAJArshad Jahangir

Key Result

Negatively charged ablation catheters significantly reduced the surface coverage of fibrin clot compared to noncharged catheters (33.8% vs 84.7%, P=0.01) in an ex vivo model.

Key Points

  • This research aims to investigate a novel charge application method to reduce coagulum formation during radiofrequency ablation procedures.
  • Used atomic force microscopy to examine fibrinogen conformational changes related to clot formation.
  • Tested uncharged, negatively, and positively charged catheters in heparinized blood for clot formation after 30 minutes.
  • Performed radiofrequency ablation on excised porcine hearts with different catheter charges and evaluated clot thickness.
  • Negatively charged catheters showed 33.8% surface coverage of fibrin clot compared to 84.7% for noncharged catheters (P=0.01).
  • Positively charged catheters had a thickness of 87.5% of surface clot versus 28.45% in noncharged (P=0.03) and 11.25% for negatively charged (P=0.03).
  • No significant difference in surface coverage was found between positively charged (93.8%) and noncharged catheters (84.7%, P=ns).

Structured PICO

Does the application of a negative charge to radiofrequency ablation catheters reduce coagulum formation in an ex vivo porcine heart model?

P
Population
In vitro model using ablation catheters immersed in heparinized blood and an ex vivo model using excised porcine heart immersed in whole, heparinized blood
I
Intervention
Application of negative charge to radiofrequency ablation catheters during 5 minutes of ablation or 30 minutes of immersion
C
Comparator
Noncharged catheters and positively charged catheters
O
Outcome
Surface coverage and thickness of fibrin clot on the catheter tips measured by electron microscopysurrogate

Applying a negative charge to radiofrequency ablation electrodes significantly reduces fibrin clot surface coverage and thickness, suggesting a novel approach to minimize thromboembolic complications.

Main Result

Absolute Event Rate: 33.8% vs 84.7%

p-value: p=0.01

Abstract

INTRODUCTION: Thromboembolism resulting from coagulum formation on the catheter and electrode surfaces is a serious complication with radiofrequency ablation procedures for heart rhythm disorders. Why coagulum occurs despite therapeutic heparinization is unclear. In this report, we demonstrate a novel approach to minimize coagulum formation based on the electromolecular characteristics of fibrinogen. METHODS AND RESULTS: Atomic force microscopy was used to establish that fibrinogen deposited on surfaces underwent conformational changes that resulted in spontaneous clot formation. We then immersed ablation catheters that were uncharged, negatively, or positively charged in heparinized blood for 30 minutes and noted the extent of clot formation. In separate experiments, ablation catheters were sutured to the ventricle of an excised porcine heart immersed in whole, heparinized blood and radiofrequency ablation performed for 5 minutes with and without charge delivered to the catheter tips. Electron microscopy of the catheter tips showed surface coverage of fibrin clot of the catheter to be 33.8% for negatively charged catheters, compared with 84.7% (P = 0.01) in noncharged catheters. There was no significant difference in surface coverage of fibrin clot between positively charged catheters (93.8%) and noncharged catheters (84.7%, P = ns). In contrast, the thickness of surface clot coverage for positively charged catheters was 87.5%, compared with 28.45% (P= 0.03) for noncharged catheters and 11.25% (P = 0.03) for negatively charged catheters, compared with noncharged catheters. CONCLUSIONS: We describe a novel method of placing negative charge on electrodes during ablation that reduced coagulum formation. This may decrease thromboembolism-related complications with radiofrequency ablation procedures.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Lim et al. (2008) studied Thromboembolism during radiofrequency ablation. Negatively charged ablation catheters vs. Noncharged catheters was evaluated on Surface coverage of fibrin clot (p=0.01). Negatively charged ablation catheters significantly reduced the surface coverage of fibrin clot compared to noncharged catheters (33.8% vs 84.7%, P=0.01) in an ex vivo model.

synapsesocial.com/papers/6a372abcd9e0d8cad3c75b86https://doi.org/10.1111/j.1540-8167.2008.01117.x
Ask AI
Helpful
Bookmark
Share
View Full Paper