A COMPREHENSIVE REVIEW OF 4D FLOW MRI AND CFD IN CARDIOVASCULAR AND CONGENITAL HEART DISEASE

被引:0
作者
El Nihum, Lamees [1 ]
Chinnadurai, Ponraj [2 ]
Lin, C. Huie [3 ]
Banerjee, Debjyoti [4 ]
机构
[1] Texas A&M Coll Med, Bryan, TX 77807 USA
[2] Siemens Med Solut USA Inc, Malvern, PA USA
[3] Houston Methodist Hosp, DeBakey Heart & Vasc Ctr, Houston, TX 77030 USA
[4] Texas A&M Univ, Dept Mech Engn, College Stn, TX 77843 USA
来源
PROCEEDINGS OF ASME 2021 FLUIDS ENGINEERING DIVISION SUMMER MEETING (FEDSM2021), VOL 1 | 2021年
关键词
COMPUTATIONAL FLUID-DYNAMICS; WALL SHEAR-STRESS; IN-VIVO; HEMODYNAMICS; COARCTATION; SIMULATION; RESOLUTION; VENTRICLE; REPAIR;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A growing population of adults with congenital heart disease (CHD) has spurred increased study in recent decades into the complex anatomical vasculature of congenital heart patients and the resulting hemodynamic changes that progressively affect the heart and great vessels. To this end, assessment of flow dynamics using advanced imaging technology and computational simulations have paved a path toward greater understanding of the patterns and implications of flow alterations in complex and changing vasculature, and offer promise for diagnostic and therapeutic intervention in the future. The focus of this review is to describe past studies of four-dimensional (4D) magnetic resonance imaging (MRI) and computational fluid dynamics (CFD) in the literature as related to pathophysiology of the heart in structural and CHD. This review will highlight the importance of working with both imaging and simulation technology to co-validate experimental (4D MRI) and simulation (CFD) models, allowing for more accurate depiction of flow dynamics within human vasculature and ultimately toward improvement of the tools and methodologies used in analysis, simulation and prediction of cardiovascular hemodynamics toward enhanced diagnostics and therapeutic intervention.
引用
收藏
页数:12
相关论文
共 55 条
[1]   Using 4D Cardiovascular Magnetic Resonance Imaging to Validate Computational Fluid Dynamics: A Case Study [J].
Biglino, Giovanni ;
Cosentino, Daria ;
Steeden, Jennifer A. ;
De Nova, Lorenzo ;
Castelli, Matteo ;
Ntsinjana, Hopewell ;
Pennati, Giancarlo ;
Taylor, Andrew M. ;
Schievano, Silvia .
FRONTIERS IN PEDIATRICS, 2015, 3
[2]   Simulation of personalised haemodynamics by various mounting positions of a prosthetic valve using computational fluid dynamics [J].
Bongert, Markus ;
Geller, Marius ;
Pennekamp, Werner ;
Nicolas, Volkmar .
BIOMEDICAL ENGINEERING-BIOMEDIZINISCHE TECHNIK, 2019, 64 (02) :147-156
[3]   Computational fluid dynamics in Fontan patients to evaluate power loss during simulated exercise [J].
Bossers, Sjoerd S. M. ;
Cibis, Merih ;
Gijsen, Frank J. ;
Schokking, Michiel ;
Strengers, Jan L. M. ;
Verhaart, Rene F. ;
Moelker, Adriaan ;
Wentzel, Jolanda J. ;
Helbing, Willem A. .
HEART, 2014, 100 (09) :696-701
[4]   Aneurysm Growth Occurs at Region of Low Wall Shear Stress Patient-Specific Correlation of Hemodynamics and Growth in a Longitudinal Study [J].
Boussel, Loic ;
Rayz, Vitaliy ;
McCulloch, Charles ;
Martin, Alastair ;
Acevedo-Bolton, Gabriel ;
Lawton, Michael ;
Higashida, Randall ;
Smith, Wade S. ;
Young, William L. ;
Saloner, David .
STROKE, 2008, 39 (11) :2997-3002
[5]  
Browning James R., 2017, Bioengineering-Basel, V4, DOI 10.3390/bioengineering4020030
[6]   Spatial Resolution and Velocity Field Improvement of 4D-Flow MRI [J].
Callaghan, Fraser M. ;
Grieve, Stuart M. .
MAGNETIC RESONANCE IN MEDICINE, 2017, 78 (05) :1959-1968
[7]   Patient-specific simulations for planning treatment in congenital heart disease [J].
Capelli, Claudio ;
Sauvage, Emilie ;
Giusti, Giuliano ;
Bosi, Giorgia M. ;
Ntsinjana, Hopewell ;
Carminati, Mario ;
Derrick, Graham ;
Marek, Jan ;
Khambadkone, Sachin ;
Taylor, Andrew M. ;
Schievano, Silvia .
INTERFACE FOCUS, 2018, 8 (01)
[8]   The effect of resolution on viscous dissipation measured with 4D flow MRI in patients with Fontan circulation: Evaluation using computational fluid dynamics [J].
Cibis, Merih ;
Jarvis, Kelly ;
Markl, Michael ;
Rose, Michael ;
Rigsby, Cynthia ;
Barker, Alex J. ;
Wentzel, Jolanda J. .
JOURNAL OF BIOMECHANICS, 2015, 48 (12) :2984-2989
[9]   Ascending thoracic aorta aneurysm repair induces positive hemodynamic outcomes in a patient with unchanged bicuspid aortic valve [J].
Condemi, Francesca ;
Campisi, Salvatore ;
Viallon, Magalie ;
Croisille, Pierre ;
Fuzelier, Jean-Francois ;
Avril, Stephane .
JOURNAL OF BIOMECHANICS, 2018, 81 :145-148
[10]   Computational Fluid Dynamic Simulations of Aortic Coarctation Comparing the Effects of Surgical- and Stent-Based Treatments on Aortic Compliance and Ventricular Workload [J].
Coogan, Jessica Shih ;
Chan, Frandics Pak ;
Taylor, Charles Anthony ;
Feinstein, Jeffrey Allan .
CATHETERIZATION AND CARDIOVASCULAR INTERVENTIONS, 2011, 77 (05) :680-691