Literature DB >> 15618060

In vivo heating of pacemaker leads during magnetic resonance imaging.

Roger Luechinger1, Volkert A Zeijlemaker, Erik Morre Pedersen, Peter Mortensen, Erling Falk, Firat Duru, Reto Candinas, Peter Boesiger.   

Abstract

AIMS: Magnetic resonance imaging (MRI) is well established as an important diagnostic tool in medicine. However, the presence of a cardiac pacemaker is usually regarded as a contraindication for MRI due to safety reasons. In this study, heating effects at the myocardium-pacemaker lead tip interface have been investigated in a chronic animal model during MRI at 1.5 Tesla. METHODS AND
RESULTS: Pacemaker leads with additional thermocouple wires as temperature sensors were implanted in nine animals. Temperature increases of up to 20 degrees C were measured during MRI of the heart. Significant impedance and minor stimulation threshold changes could be seen. However, pathology and histology could not clearly demonstrate heat-induced damage.
CONCLUSIONS: MRI may produce considerable heating at the lead tip. Changes of pacing parameters due to MRI could be seen in chronic experiments. Potential risk of tissue damage cannot be excluded even though no reproducible alterations at the histological level could be found.

Mesh:

Year:  2004        PMID: 15618060     DOI: 10.1093/eurheartj/ehi009

Source DB:  PubMed          Journal:  Eur Heart J        ISSN: 0195-668X            Impact factor:   29.983


  45 in total

1.  Safety of magnetic resonance imaging in patients with permanent pacemakers: a collaborative clinical approach.

Authors:  Barry Anthony Boilson; Anita Wokhlu; Nancy G Acker; Joel P Felmlee; Robert E Watson; Paul R Julsrud; Paul A Friedman; Yong-Mei Cha; Robert F Rea; David L Hayes; Win-Kuang Shen
Journal:  J Interv Card Electrophysiol       Date:  2011-09-21       Impact factor: 1.900

2.  A protocol for patients with cardiovascular implantable devices undergoing magnetic resonance imaging (MRI): should defibrillation threshold testing be performed post-(MRI).

Authors:  Peter Thomas Burke; Hamid Ghanbari; Patrick B Alexander; Michael K Shaw; Marcos Daccarett; Christian Machado
Journal:  J Interv Card Electrophysiol       Date:  2010-01-29       Impact factor: 1.900

3.  Magnetic resonance imaging, pacemakers and implantable cardioverter-defibrillators: current situation and clinical perspective.

Authors:  M J W Götte; I K Rüssel; G J de Roest; T Germans; R F Veldkamp; P Knaapen; C P Allaart; A C van Rossum
Journal:  Neth Heart J       Date:  2010-01       Impact factor: 2.380

4.  Magnetic resonance imaging in patients with cardiac implantable electronic devices: a single-center prospective study.

Authors:  Mrinal Yadava; Matthew Nugent; Angela Krebsbach; Jessica Minnier; Peter Jessel; Charles A Henrikson
Journal:  J Interv Card Electrophysiol       Date:  2017-07-22       Impact factor: 1.900

Review 5.  Safety of implanted cardiac devices in an MRI environment.

Authors:  Esra Gucuk Ipek; Saman Nazarian
Journal:  Curr Cardiol Rep       Date:  2015-07       Impact factor: 2.931

Review 6.  [MR safety assessment of active implanted medical devices. German version].

Authors:  Sarra Aissani; Elmar Laistler; Jacques Felblinger
Journal:  Radiologe       Date:  2019-10       Impact factor: 0.635

Review 7.  MR safety assessment of active implantable medical devices.

Authors:  Sarra Aissani; Elmar Laistler; Jacques Felblinger
Journal:  Radiologe       Date:  2019-12       Impact factor: 0.635

8.  [Pacemaker and MRI in clinical practice].

Authors:  A Fendt; M Strauß; K Kouraki; R Zahn; T Kleemann
Journal:  Herz       Date:  2018-11       Impact factor: 1.443

9.  Post operative temporary epicardial pacing: When, how and why?

Authors:  Anjan S Batra; Seshadri Balaji
Journal:  Ann Pediatr Cardiol       Date:  2008-07

10.  In-vitro mapping of E-fields induced near pacemaker leads by simulated MR gradient fields.

Authors:  Howard I Bassen; Gonzalo G Mendoza
Journal:  Biomed Eng Online       Date:  2009-12-15       Impact factor: 2.819

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