Literature DB >> 27037913

Electrogram Characteristics of Ablated and Non-Ablated Myocardium in Humans: A Comparison of Miniaturized Embedded Electrodes and Conventional Ablation Electrodes.

Michael S Lloyd1, Michael H Hoskins1, Anand D Shah1, Jonathan J Langberg1.   

Abstract

INTRODUCTION: Intracardiac electrogram voltage remains an important metric for radiofrequency lesion application. Embedded micro-electrodes within ablation catheters are now approved for use in humans.
OBJECTIVE: This study examined electrogram characteristics of miniaturized electrode bipoles (iEGMmini ) compared to distal ablation tip bipoles (iEGMstandard ) in the setting of typical atrial flutter in humans.
METHODS: This was a single-center prospective trial involving 21 patients. A total of 54 non-ablated and 56 ablated sites were analyzed offline by separate blinded observers for iEGM voltage after a clinically successful radiofrequency (RF) ablation for typical atrial flutter. Ablation sites were defined as sites that were localized anatomically within the RF lesion set and did not have atrial capture at 10 mA and 2 milliseconds. Non-ablated sites were defined as sites adjacent to or remote from the ablation lesion set with capture at 10 mA and 2 milliseconds.
RESULTS: iEGMmini had greater voltages at non-ablated sites and lower voltages at ablated sites than iEGMstandard (non-ablated sites iEGMstandard 0.64 mV vs. iEGMmini 1.0 mV; ablated sites iEGMstandard 0.15 mV, iEGMmini 0.08 mV, P < 0.001). The difference for each patient between ablated and non-ablated sites was greater for iEGMmini compared to iEGMstandard (0.94 mV ± 0.57 iEGMmini vs. 0.52 mV ± 0.35 iEGMstandard , P < 0.001). Inter-observer agreement was good among all non-ablated sites and iEGMmini ablated sites, but was less robust for ablated sites using iEGMstandard .
CONCLUSIONS: Imbedded mini-electrode iEGM bipoles had higher voltages in non-ablated tissue, lower voltages in ablated tissue, and significantly greater intra-patient differences between ablated and non-ablated sites. These data suggest a potential role for miniaturized electrode bipole use in RF lesion monitoring.
© 2016 Wiley Periodicals, Inc.

Entities:  

Keywords:  atrial flutter; electrogram analysis; voltage

Mesh:

Year:  2016        PMID: 27037913     DOI: 10.1111/jce.12980

Source DB:  PubMed          Journal:  J Cardiovasc Electrophysiol        ISSN: 1045-3873


  4 in total

1.  Mini Electrodes on Ablation Catheters: Valuable Addition or Redundant Information?-Insights from a Computational Study.

Authors:  Stefan Pollnow; Joachim Greiner; Tobias Oesterlein; Eike M Wülfers; Axel Loewe; Olaf Dössel
Journal:  Comput Math Methods Med       Date:  2017-05-03       Impact factor: 2.238

2.  Electrogram voltage and pacing threshold before ablation, measured by mini-electrodes, predict parameters indicative of transmural lesions in the human atrium.

Authors:  Carla Lázaro; Teresa Barrio-López; Eduardo Castellanos; Mercedes Ortiz; Martín Arceluz; Jesús Almendral
Journal:  J Interv Card Electrophysiol       Date:  2019-05-02       Impact factor: 1.900

3.  Use of microelectrode near-field signals to determine catheter contact.

Authors:  Mathew R Levy; Faisal M Merchant; Jonathan J Langberg; David B Delurgio
Journal:  J Arrhythm       Date:  2017-12-15

4.  Early and Delayed Alteration of Atrial Electrograms Around Single Radiofrequency Ablation Lesion.

Authors:  Stepan Havranek; Hana Alfredova; Zdenka Fingrova; Lucie Souckova; Dan Wichterle
Journal:  Front Cardiovasc Med       Date:  2019-01-08
  4 in total

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