Cardiovascular magnetic resonance imaging of isolated perfused pig hearts in a 3T clinical MR scanner
Author(s) -
Andreas Schuster,
Amedeo Chiribiri,
Masaki Ishida,
Geraint Morton,
Matthias Paul,
Shazia Hussain,
Boris Bigalke,
Divaka Perera,
Tobias Schaeffter,
Eike Nagel
Publication year - 2012
Publication title -
interventional medicine and applied science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.195
H-Index - 14
eISSN - 2061-5094
pISSN - 2061-1617
DOI - 10.1556/imas.4.2012.4.3
Subject(s) - scanner , magnetic resonance imaging , medicine , nuclear medicine , perfusion , biomedical engineering , radiology , artificial intelligence , computer science
Purpose An isolated perfused pig heart model has recently been proposed for the development of novel methods in standard clinical magnetic resonance (MR) scanners. The original set-up required the electrical system to be within the safe part of the MR-room, which introduced significant background noise. The purpose of the current work was to refine the system to overcome this limitation so that all electrical parts are completely outside the scanner room. Methods Four pig hearts were explanted under terminal anaesthesia from large white cross landrace pigs. All hearts underwent cardiovascular magnetic resonance (CMR) scanning in the MR part of a novel combined 3T MR and x-ray fluoroscopy (XMR) suite. CMR scanning included real-time k-t SENSE functional imaging, k-t SENSE accelerated perfusion imaging and late gadolinium enhancement imaging. Interference with image quality was assessed by spurious echo imaging and compared to noise levels acquired while operating the electrical parts within the scanner room. Results Imaging was performed successfully in all hearts. The system proved suitable for isolated heart perfusion in a novel 3T XMR suite. No significant additional noise was introduced into the scanner room by our set-up. Conclusions We have substantially improved a previous version of an isolated perfused pig heart model and made it applicable for MR imaging in a state of the art clinical 3T XMR imaging suite. The use of this system should aid novel CMR sequence development and translation into clinical practice.
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