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dc.creatorAramendía-Vidaurreta, V. (Verónica)-
dc.creatorGordaliza, P.M. (Pedro)-
dc.creatorVidorreta, M. (Marta)-
dc.creatorEcheverría-Chasco, R. (Rebeca)-
dc.creatorBastarrika, G. (Gorka)-
dc.creatorMuñoz-Barrutia, A. (Arrate)-
dc.creatorFernández-Seara, M.A. (María A.)-
dc.date.accessioned2022-03-29T11:54:22Z-
dc.date.available2022-03-29T11:54:22Z-
dc.date.issued2021-
dc.identifier.citationAramendía-Vidaurreta, V. (Verónica); Gordaliza, P.M. (Pedro); Vidorreta, M. (Marta); et al. "Reduction of motion effects in myocardial arterial spin labeling". Magnetic Resonance in Medicine. 87 (3), 2021, 1261 - 1275es_ES
dc.identifier.urihttps://hdl.handle.net/10171/63299-
dc.description.abstractPurpose To evaluate the accuracy and reproducibility of myocardial blood flow measurements obtained under different breathing strategies and motion correction techniques with arterial spin labeling. Methods A prospective cardiac arterial spin labeling study was performed in 12 volunteers at 3 Tesla. Perfusion images were acquired twice under breath-hold, synchronized-breathing, and free-breathing. Motion detection based on the temporal intensity variation of a myocardial voxel, as well as image registration based on pairwise and groupwise approaches, were applied and evaluated in synthetic and in vivo data. A region of interest was drawn over the mean perfusion-weighted image for quantification. Original breath-hold datasets, analyzed with individual regions of interest for each perfusion-weighted image, were considered as reference values. Results Perfusion measurements in the reference breath-hold datasets were in line with those reported in literature. In original datasets, prior to motion correction, myocardial blood flow quantification was significantly overestimated due to contamination of the myocardial perfusion with the high intensity signal of blood pool. These effects were minimized with motion detection or registration. Synthetic data showed that accuracy of the perfusion measurements was higher with the use of registration, in particular after the pairwise approach, which probed to be more robust to motion. Conclusion Satisfactory results were obtained for the free-breathing strategy after pairwise registration, with higher accuracy and robustness (in synthetic datasets) and higher intrasession reproducibility together with lower myocardial blood flow variability across subjects (in in vivo datasets). Breath-hold and synchronized-breathing after motion correction provided similar results, but these breathing strategies can be difficult to perform by patients.es_ES
dc.description.sponsorshipVerónica Aramendía- Vidaurreta received PhD grant sup-port from Asociación de Amigos de la Universidad de Navarra and Banco Santander.es_ES
dc.language.isoenges_ES
dc.publisherWileyes_ES
dc.rightsinfo:eu-repo/semantics/openAccesses_ES
dc.subjectArterial spin labelinges_ES
dc.subjectCoronary artery diseasees_ES
dc.subjectMotion correctiones_ES
dc.subjectMyocardial blood flowes_ES
dc.subjectMyocardial perfusiones_ES
dc.titleReduction of motion effects in myocardial arterial spin labelinges_ES
dc.typeinfo:eu-repo/semantics/articlees_ES
dc.identifier.doi10.1002/mrm.29038-
dadun.citation.endingPage1275es_ES
dadun.citation.number3es_ES
dadun.citation.publicationNameMagnetic Resonance in Medicinees_ES
dadun.citation.startingPage1261es_ES
dadun.citation.volume87es_ES

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