2
TITLE: Accuracy and temporal analysis of non-Newtonian models of blood in the computational FFR - Numerical implementation
AUTHORS: Fernandes, M.; Sousa, L. C.; Antonio, C. C. ; S.I.S. Pinto ;
PUBLISHED: 2024, SOURCE: INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, VOLUME: 161
INDEXED IN: Scopus WOS CrossRef Unpaywall
4
TITLE: Numerical Study of a Thrombus Migration Risk in Aneurysm After Coil Embolization in Patient Cases: FSI Modelling
AUTHORS: Paz, C.; Suarez, E.; Cabarcos, A.; S.I.S. Pinto ;
PUBLISHED: 2023, SOURCE: CARDIOVASCULAR ENGINEERING AND TECHNOLOGY
INDEXED IN: Scopus WOS CrossRef
5
TITLE: Cognitive apprenticeship and T-shaped instructional design in computational fluid mechanics: Student perspectives on learning  Full Text
AUTHORS: S.I.S. Pinto ; Zvacek, SM;
PUBLISHED: 2022, SOURCE: INTERNATIONAL JOURNAL OF MECHANICAL ENGINEERING EDUCATION, VOLUME: 50, ISSUE: 1
INDEXED IN: Scopus WOS CrossRef
IN MY: ORCID
6
TITLE: Design and Parametric Enhancement of a Flexible Planar TEG—Numerical Study
AUTHORS: Fernandes, MC; Furtado, C; Campanhã, D; S.I.S. Pinto ;
PUBLISHED: 2022, SOURCE: Advanced Structured Materials, VOLUME: 175
INDEXED IN: Scopus CrossRef
7
TITLE: Implementation and Comparison of Non-Newtonian Viscosity Models in Hemodynamic Simulations of Patient Coronary Arteries
AUTHORS: Fernandes, MC; Sousa, LC; de Castro, CF; da Palma, JMLM; António, CC ; S.I.S. Pinto ;
PUBLISHED: 2022, SOURCE: Advanced Structured Materials, VOLUME: 175
INDEXED IN: Scopus CrossRef: 1
8
TITLE: Semi-automatic Method of Stent Development for Hemodynamic Simulations in Patient Coronary Arteries with Disease
AUTHORS: Matias, L; de Castro, CF; António, CC ; Sousa, LC; S.I.S. Pinto ;
PUBLISHED: 2022, SOURCE: Advanced Structured Materials, VOLUME: 175
INDEXED IN: Scopus CrossRef
9
TITLE: FSI modeling on the effect of artery-aneurysm thickness and coil embolization in patient cases  Full Text
AUTHORS: Paz, C; Suarez, E; Cabarcos, A; S.I.S. Pinto ;
PUBLISHED: 2021, SOURCE: COMPUTER METHODS AND PROGRAMS IN BIOMEDICINE, VOLUME: 206
INDEXED IN: Scopus WOS CrossRef: 6
10
TITLE: Modelling human liver microphysiology on a chip through a finite element based design approach  Full Text
AUTHORS: Menezes, PD; Gadegaard, N; Jorge, RMN ; S.I.S. Pinto ;
PUBLISHED: 2021, SOURCE: INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN BIOMEDICAL ENGINEERING
INDEXED IN: Scopus WOS CrossRef
Page 1 of 5. Total results: 42.