Literature DB >> 14568905

Anatomic stereotactic catheter ablation on three-dimensional magnetic resonance images in real time.

Timm Dickfeld1, Hugh Calkins, Muz Zviman, Ritsushi Kato, Glenn Meininger, Lars Lickfett, Ron Berger, Henry Halperin, Stephen B Solomon.   

Abstract

BACKGROUND: Targets for radiofrequency (RF) ablation of atrial fibrillation, atrial flutter, and nonidiopathic ventricular tachycardia are increasingly being selected on the basis of anatomic considerations. Because fluoroscopy provides only limited information about the relationship between catheter positions and cardiac structures and is associated with radiation risk, other approaches to mapping may be beneficial. METHODS AND
RESULTS: An electromagnetic catheter positioning system was superimposed on 3D MR images using fiducial markers. This allowed the dynamic display of the catheter position on the true anatomy of previously acquired MR images in real time. In vitro accuracy and precision during catheter navigation were assessed in a phantom model and were 1.11+/-0.06 and 0.30+/-0.07 mm (mean+/-SEM), respectively. Left and right heart catheterization was performed in 7 swine without the use of fluoroscopy, yielding an in vivo accuracy and precision of 2.74+/-0.52 and 1.97+/-0.44 mm, respectively. To assess the reproducibility of RF ablation, RF lesions were created repeatedly at the identical anatomic site in the right atrium (n=8 swine). Average distance of the repeated right atrial ablations was 3.92+/-0.5 mm. Straight 3-point lines were created in the right and left ventricles to determine the ability to facilitate complex ablation procedures (n=6 swine). The ventricular lesions deviated 1.70+/-0.24 mm from a straight line, and the point distance differed by 2.25+/-0.63 mm from the pathological specimen.
CONCLUSIONS: Real-time display of the catheter position on 3D MRI allows accurate and precise RF ablation guided by the true anatomy. This may facilitate anatomically based ablation procedures in, for instance, atrial fibrillation or nonidiopathic ventricular tachycardia and decrease radiation times.

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Year:  2003        PMID: 14568905     DOI: 10.1161/01.CIR.0000093191.05433.B0

Source DB:  PubMed          Journal:  Circulation        ISSN: 0009-7322            Impact factor:   29.690


  25 in total

1.  Stereotactic magnetic resonance guidance for anatomically targeted ablations of the fossa ovalis and the left atrium.

Authors:  Timm Dickfeld; Hugh Calkins; Menekhem Zviman; Glenn Meininger; Lars Lickfett; Ariel Roguin; Albert C Lardo; Ronald Berger; Henry Halperin; Stephen B Solomon
Journal:  J Interv Card Electrophysiol       Date:  2004-10       Impact factor: 1.900

Review 2.  Fusion of imaging technologies: how, when, and for whom?

Authors:  Ashul Govil; Hugh Calkins; David D Spragg
Journal:  J Interv Card Electrophysiol       Date:  2011-10-01       Impact factor: 1.900

3.  ACCF/ACR/AHA/NASCI/SCMR 2010 expert consensus document on cardiovascular magnetic resonance: a report of the American College of Cardiology Foundation Task Force on Expert Consensus Documents.

Authors:  W Gregory Hundley; David A Bluemke; J Paul Finn; Scott D Flamm; Mark A Fogel; Matthias G Friedrich; Vincent B Ho; Michael Jerosch-Herold; Christopher M Kramer; Warren J Manning; Manesh Patel; Gerald M Pohost; Arthur E Stillman; Richard D White; Pamela K Woodard
Journal:  Circulation       Date:  2010-05-17       Impact factor: 29.690

Review 4.  Endoventricular electromechanical mapping-the diagnostic and therapeutic utility of the NOGA XP Cardiac Navigation System.

Authors:  Peter J Psaltis; Stephen G Worthley
Journal:  J Cardiovasc Transl Res       Date:  2008-12-10       Impact factor: 4.132

Review 5.  ACCF/ACR/AHA/NASCI/SCMR 2010 expert consensus document on cardiovascular magnetic resonance: a report of the American College of Cardiology Foundation Task Force on Expert Consensus Documents.

Authors:  W Gregory Hundley; David A Bluemke; J Paul Finn; Scott D Flamm; Mark A Fogel; Matthias G Friedrich; Vincent B Ho; Michael Jerosch-Herold; Christopher M Kramer; Warren J Manning; Manesh Patel; Gerald M Pohost; Arthur E Stillman; Richard D White; Pamela K Woodard
Journal:  J Am Coll Cardiol       Date:  2010-06-08       Impact factor: 24.094

6.  Technology preview: X-ray fused with magnetic resonance during invasive cardiovascular procedures.

Authors:  Luis F Gutiérrez; Ranil de Silva; Cengizhan Ozturk; Merdim Sonmez; Annette M Stine; Amish N Raval; Venkatesh K Raman; Vandana Sachdev; Ronnier J Aviles; Myron A Waclawiw; Elliot R McVeigh; Robert J Lederman
Journal:  Catheter Cardiovasc Interv       Date:  2007-11-15       Impact factor: 2.692

Review 7.  Magnetic resonance imaging and radiofrequency ablations.

Authors:  T Dickfeld
Journal:  Herzschrittmacherther Elektrophysiol       Date:  2007-09

8.  Integration of the data from electroanatomical mapping system and CT imaging modality.

Authors:  P Kuklik; L Szumowski; J J Zebrowski; P Sanders
Journal:  Int J Cardiovasc Imaging       Date:  2008-11-28       Impact factor: 2.357

Review 9.  The role of integrated PET-CT scar maps for guiding ventricular tachycardia ablations.

Authors:  Timm Dickfeld; Christopher Kocher
Journal:  Curr Cardiol Rep       Date:  2008-03       Impact factor: 2.931

Review 10.  Interventional cardiovascular magnetic resonance imaging: a new opportunity for image-guided interventions.

Authors:  Christina E Saikus; Robert J Lederman
Journal:  JACC Cardiovasc Imaging       Date:  2009-11
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