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Computing thickness of irregularly-shaped thin walls using a locally semi-implicit scheme with extrapolation to solve the Laplace equation: Application to the right ventricle.
Merino-Caviedes, Susana; Martín-Fernández, Marcos; Pérez Rodríguez, María Teresa; Martín-Fernández, Miguel Ángel; Filgueiras-Rama, David; Simmross-Wattenberg, Federico; Alberola-López, Carlos.
Afiliação
  • Merino-Caviedes S; Laboratorio de Procesado de Imagen, ETSI Telecomunicación, Universidad de Valladolid, Valladolid, Spain. Electronic address: smercav@lpi.tel.uva.es.
  • Martín-Fernández M; Laboratorio de Procesado de Imagen, ETSI Telecomunicación, Universidad de Valladolid, Valladolid, Spain. Electronic address: marcma@tel.uva.es.
  • Pérez Rodríguez MT; Escuela de Ingenierías Industriales, Universidad de Valladolid, Valladolid, Spain. Electronic address: terper@wmatem.eis.uva.es.
  • Martín-Fernández MÁ; Laboratorio de Procesado de Imagen, ETSI Telecomunicación, Universidad de Valladolid, Valladolid, Spain. Electronic address: migmar@tel.uva.es.
  • Filgueiras-Rama D; Centro Nacional de Investigaciones Cardiovasculares (CNIC), Novel Arrhythmogenic Mechanisms Program, Madrid, Spain. Electronic address: david.filgueiras@cnic.es.
  • Simmross-Wattenberg F; Laboratorio de Procesado de Imagen, ETSI Telecomunicación, Universidad de Valladolid, Valladolid, Spain. Electronic address: fedsim@tel.uva.es.
  • Alberola-López C; Laboratorio de Procesado de Imagen, ETSI Telecomunicación, Universidad de Valladolid, Valladolid, Spain. Electronic address: caralb@tel.uva.es.
Comput Biol Med ; 169: 107855, 2024 Feb.
Article em En | MEDLINE | ID: mdl-38113681
ABSTRACT
Cardiac Magnetic Resonance (CMR) Imaging is currently considered the gold standard imaging modality in cardiology. However, it is accompanied by a tradeoff between spatial resolution and acquisition time. Providing accurate measures of thin walls relative to the image resolution may prove challenging. One such anatomical structure is the cardiac right ventricle. Methods for measuring thickness of wall-like anatomical structures often rely on the Laplace equation to provide point-to-point correspondences between both boundaries. This work presents limex, a novel method to solve the Laplace equation using ghost nodes and providing extrapolated values, which is tested on three different datasets a mathematical phantom, a set of biventricular segmentations from CMR images of ten pigs and the database used at the RV Segmentation Challenge held at MICCAI'12. Thickness measurements using the proposed methodology are more accurate than state-of-the-art methods, especially with the coarsest image resolutions, yielding mean L1 norms of the error between 43.28% and 86.52% lower than the second-best methods on the different test datasets. It is also computationally affordable. Limex has outperformed other state-of-the-art methods in classifying RV myocardial segments by their thickness.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Imagem Cinética por Ressonância Magnética / Ventrículos do Coração Limite: Animals Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Imagem Cinética por Ressonância Magnética / Ventrículos do Coração Limite: Animals Idioma: En Ano de publicação: 2024 Tipo de documento: Article