3D motion strategy for online volumetric thermometry using simultaneous multi-slice EPI at 1.5T: an evaluation study
DENIS DE SENNEVILLE, Baudouin
Modélisation Mathématique pour l'Oncologie [MONC]
Institut de Mathématiques de Bordeaux [IMB]
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Modélisation Mathématique pour l'Oncologie [MONC]
Institut de Mathématiques de Bordeaux [IMB]
DENIS DE SENNEVILLE, Baudouin
Modélisation Mathématique pour l'Oncologie [MONC]
Institut de Mathématiques de Bordeaux [IMB]
Modélisation Mathématique pour l'Oncologie [MONC]
Institut de Mathématiques de Bordeaux [IMB]
QUESSON, Bruno
Institut de rythmologie et modélisation cardiaque [Pessac] [IHU Liryc]
IHU-LIRYC
Centre de recherche Cardio-Thoracique de Bordeaux [Bordeaux] [CRCTB]
< Réduire
Institut de rythmologie et modélisation cardiaque [Pessac] [IHU Liryc]
IHU-LIRYC
Centre de recherche Cardio-Thoracique de Bordeaux [Bordeaux] [CRCTB]
Langue
en
Article de revue
Ce document a été publié dans
International Journal of Hyperthermia. 2023-04-20, vol. 40, n° 1
Taylor & Francis
Résumé en anglais
Purpose: In presence of respiratory motion, temperature mapping is altered by in-plane and throughplane displacements between successive acquisitions together with periodic phase variations. Fast 2D Echo Planar Imaging ...Lire la suite >
Purpose: In presence of respiratory motion, temperature mapping is altered by in-plane and throughplane displacements between successive acquisitions together with periodic phase variations. Fast 2D Echo Planar Imaging (EPI) sequence can accommodate intra-scan motion, but limited volume coverage and inter-scan motion remain a challenge during free-breathing acquisition since position offsets can arise between the different slices. Method: To address this limitation, we evaluated a 2D simultaneous multi-slice EPI sequence with multiband (MB) acceleration during radiofrequency ablation on a mobile gel and in the liver of a volunteer (no heating). The sequence was evaluated in terms of resulting inter-scan motion, temperature uncertainty and elevation, potential false-positive heating and repeatability. Lastly, to account for potential through-plane motion, a 3D motion compensation pipeline was implemented and evaluated. Results: In-plane motion was compensated whatever the MB factor and temperature distribution was found in agreement during both the heating and cooling periods. No obvious false-positive temperature was observed under the conditions being investigated. Repeatability of measurements results in a 95% uncertainty below 2 C for MB1 and MB2. Uncertainty up to 4.5 C was reported with MB3 together with the presence of aliasing artifacts. Lastly, fast simultaneous multi-slice EPI combined with 3D motion compensation reduce residual out-of-plane motion. Conclusion: Volumetric temperature imaging (12 slices/700 ms) could be performed with 2 C accuracy or less, and offer tradeoffs in acquisition time or volume coverage. Such a strategy is expected to increase procedure safety by monitoring large volumes more rapidly for MR-guided thermotherapy on mobile organs.< Réduire
Mots clés en anglais
Thermometry
registration
echo planar imaging
simultaneous multi-slice
respiratory motion
thermo-ablation
Project ANR
Translational Research and Advanced Imaging Laboratory - ANR-10-LABX-0057
L'Institut de Rythmologie et modélisation Cardiaque - ANR-10-IAHU-0004
Contrôle des Ablations Radiofréquence par Thermométrie (IRM) pour Les Oreillettes et VEntricules - ANR-17-CE19-0007
Thermometrie cardiaque haute résolution sur une IRM clinique en utilisant des antennes intracardiaques - ANR-19-CE19-0008
Plateforme multi-modale d'exploration en cardiologie - ANR-11-EQPX-0030
L'Institut de Rythmologie et modélisation Cardiaque - ANR-10-IAHU-0004
Contrôle des Ablations Radiofréquence par Thermométrie (IRM) pour Les Oreillettes et VEntricules - ANR-17-CE19-0007
Thermometrie cardiaque haute résolution sur une IRM clinique en utilisant des antennes intracardiaques - ANR-19-CE19-0008
Plateforme multi-modale d'exploration en cardiologie - ANR-11-EQPX-0030
Origine
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