3D Intraventricular Flow Mapping from Colour Doppler Images and Wall Motion

dc.contributor.author Kuberan Pushparajah
dc.contributor.author Alberto Gomez
dc.contributor.author Tobias Schaeffter
dc.contributor.author Daniel Giese
dc.contributor.author Adelaide de Vecchi
dc.contributor.author Kuberan Pushparajah
dc.contributor.author John M. Simpson
dc.contributor.author Graeme P. Penney
dc.control.author John M. Simpson
dc.date.accessioned 2025-06-19T13:30:29Z
dc.date.available 2025-06-19T13:30:29Z
dc.date.issued 2013-01-01
dc.description.abstract We propose a new method to recover 3D time-resolved velocity vectors within the left ventricle (LV) using a combination of multiple registered 3D colour Doppler images and LV wall motion. Incorporation of wall motion, calculated from 3D B-Mode images, and the use of a multi-scale reconstruction framework allow recovery of 3D velocity over the entire ventricle, even in regions where there is little or no Doppler data. Our method is tested on the LV of a paediatric patient and is compared to 2D and 3D flow Magnetic Resonance Imaging (MRI). Use of wall motion information increased stroke volume accuracy by 14%, and enabled full 3D velocity mapping within the ventricle. Velocity distribution showed good agreement with respect to MRI, and vortex formation during diastole was successfully reconstructed.
dc.identifier.doi 10.1007/978-3-642-40763-5_59
dc.identifier.openaire doi_dedup___:ed7865505a4207949a457c34252b6243
dc.identifier.pmid 24579175
dc.identifier.uri https://ror.circle-u.eu/handle/123456789/1285132
dc.openaire.affiliation King's College London
dc.openaire.collaboration 1
dc.publisher Springer Berlin Heidelberg
dc.rights OPEN
dc.rights.license Springer TDM
dc.subject Male
dc.subject Heart Ventricles
dc.subject Subtraction Technique
dc.subject Image Interpretation, Computer-Assisted
dc.subject Echocardiography, Three-Dimensional
dc.subject Humans
dc.subject Infant
dc.subject Reproducibility of Results
dc.subject Image Enhancement
dc.subject Sensitivity and Specificity
dc.subject Algorithms
dc.subject Echocardiography, Doppler, Color
dc.subject Pattern Recognition, Automated
dc.title 3D Intraventricular Flow Mapping from Colour Doppler Images and Wall Motion
dc.type publication

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