Literature DB >> 30093340

Non-invasive Characterization of Focal Arrhythmia with Electromechanical Wave Imaging in Vivo.

Alexandre Costet1, Elaine Wan2, Lea Melki1, Ethan Bunting1, Julien Grondin1, Hasan Garan2, Elisa Konofagou3.   

Abstract

There is currently no established method for the non-invasive characterization of arrhythmia and differentiation between endocardial and epicardial triggers at the point of care. Electromechanical wave imaging (EWI) is a novel ultrasound-based imaging technique based on time-domain transient strain estimation that can map and characterize electromechanical activation in the heart in vivo. The objectives of this initial feasibility study were to determine that EWI is capable of differentiating between endocardial and epicardial sources of focal rhythm and, as a proof-of-concept, that EWI could characterize focal arrhythmia in one patient with premature ventricular contractions (PVCs) before radiofrequency (RF) ablation treatment. First, validation of EWI for differentiation of surface of origin was performed in seven (n = 7) adult dogs using four epicardial and four endocardial pacing protocols. Second, one (n = 1) adult patient diagnosed with PVC was imaged with EWI before the scheduled RF ablation procedure, and EWI results were compared with mapping procedure results. In dogs, EWI was capable of detecting whether pacing was of endocardial or epicardial origin in six of seven cases (86% success rate). In the PVC patient, EWI correctly identified both regions and surface of origin, as confirmed by results from the electrical mapping obtained from the RF ablation procedure. These results reveal that EWI can map the electromechanical activation across the myocardium and indicate that EWI could serve as a valuable pre-treatment planning tool in the clinic.
Copyright © 2018 Society. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Arrhythmias; Electromechanical activation; Electromechanical wave imaging; Non-invasive imaging; Premature ventricular contraction; Strain; Ultrasound

Mesh:

Year:  2018        PMID: 30093340      PMCID: PMC6163072          DOI: 10.1016/j.ultrasmedbio.2018.06.006

Source DB:  PubMed          Journal:  Ultrasound Med Biol        ISSN: 0301-5629            Impact factor:   2.998


  30 in total

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2.  Clinical impact of a novel three-dimensional electrocardiographic imaging for non-invasive mapping of ventricular arrhythmias-a prospective randomized trial.

Authors:  Damir Erkapic; Harald Greiss; Dmitri Pajitnev; Sergey Zaltsberg; Nicolas Deubner; Alexander Berkowitsch; Susanne Möllman; Johannes Sperzel; Andreas Rolf; Jörn Schmitt; Christian W Hamm; Malte Kuniss; Thomas Neumann
Journal:  Europace       Date:  2014-10-27       Impact factor: 5.214

3.  Myocardial velocity gradient as a new indicator of regional left ventricular contraction: detection by a two-dimensional tissue Doppler imaging technique.

Authors:  M Uematsu; K Miyatake; N Tanaka; H Matsuda; A Sano; N Yamazaki; M Hirama; M Yamagishi
Journal:  J Am Coll Cardiol       Date:  1995-07       Impact factor: 24.094

4.  Electromechanical wave imaging for arrhythmias.

Authors:  Jean Provost; Vu Thanh-Hieu Nguyen; Diégo Legrand; Stan Okrasinski; Alexandre Costet; Alok Gambhir; Hasan Garan; Elisa E Konofagou
Journal:  Phys Med Biol       Date:  2011-10-25       Impact factor: 3.609

5.  Electromechanical wave imaging of normal and ischemic hearts in vivo.

Authors:  Jean Provost; Wei-Ning Lee; Kana Fujikura; Elisa E Konofagou
Journal:  IEEE Trans Med Imaging       Date:  2009-08-25       Impact factor: 10.048

6.  Longitudinal myocardial function assessed by tissue velocity, strain, and strain rate tissue Doppler echocardiography in patients with AL (primary) cardiac amyloidosis.

Authors:  Jun Koyama; Patricia A Ray-Sequin; Rodney H Falk
Journal:  Circulation       Date:  2003-05-12       Impact factor: 29.690

7.  High-frame rate, full-view myocardial elastography with automated contour tracking in murine left ventricles in vivo.

Authors:  Jianwen Luo; Elisa E Konofagou
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2008-01       Impact factor: 2.725

8.  Assessing the atrial electromechanical coupling during atrial focal tachycardia, flutter, and fibrillation using electromechanical wave imaging in humans.

Authors:  Jean Provost; Alexandre Costet; Elaine Wan; Alok Gambhir; William Whang; Hasan Garan; Elisa E Konofagou
Journal:  Comput Biol Med       Date:  2015-08-24       Impact factor: 4.589

9.  Noninvasive electrocardiographic imaging for cardiac electrophysiology and arrhythmia.

Authors:  Charulatha Ramanathan; Raja N Ghanem; Ping Jia; Kyungmoo Ryu; Yoram Rudy
Journal:  Nat Med       Date:  2004-03-14       Impact factor: 53.440

10.  Pacemapping.

Authors:  Mauricio Moreno; Nicasio Perez-Castellano; Julian Villacastin
Journal:  Indian Pacing Electrophysiol J       Date:  2005-01-01
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  2 in total

1.  Localization of Accessory Pathways in Pediatric Patients With Wolff-Parkinson-White Syndrome Using 3D-Rendered Electromechanical Wave Imaging.

Authors:  Lea Melki; Christopher S Grubb; Rachel Weber; Pierre Nauleau; Hasan Garan; Elaine Wan; Eric S Silver; Leonardo Liberman; Elisa E Konofagou
Journal:  JACC Clin Electrophysiol       Date:  2019-01-30

2.  Noninvasive localization of cardiac arrhythmias using electromechanical wave imaging.

Authors:  Christopher S Grubb; Lea Melki; Daniel Y Wang; James Peacock; Jose Dizon; Vivek Iyer; Carmine Sorbera; Angelo Biviano; David A Rubin; John P Morrow; Deepak Saluja; Andrew Tieu; Pierre Nauleau; Rachel Weber; Salma Chaudhary; Irfan Khurram; Marc Waase; Hasan Garan; Elisa E Konofagou; Elaine Y Wan
Journal:  Sci Transl Med       Date:  2020-03-25       Impact factor: 17.956

  2 in total

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