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Computer Modeling in Engineering & Sciences : CMES|February 10, 2015
3D Echo-Based Patient-Specific Computational Left Ventricle Models to Quantify Material Properties and Stress/Strain Differences between Ventricles with and without InfarctRui Fan, Dalin Tang, Jing Yao, et al.Journal of Biomechanical Engineering|May 22, 2015
Infarcted Left Ventricles Have Stiffer Material Properties and Lower Stiffness Variation: Three-Dimensional Echo-Based Modeling to Quantify In Vivo Ventricle Material PropertiesLongling Fan, Jing Yao, Chun Yang, et al.Molecular & Cellular Biomechanics : MCB|February 6, 2018
Modeling Active Contraction and Relaxation of Left Ventricle Using Different Zero-load Diastole and Systole Geometries for Better Material Parameter Estimation and Stress/Strain CalculationsLongling Fan, Jing Yao, Chun Yang, et al.Biomedical Engineering Online|April 6, 2016
Material stiffness parameters as potential predictors of presence of left ventricle myocardial infarction: 3D echo-based computational modeling studyLongling Fan, Jing Yao, Chun Yang, et al.Frontiers in Physiology|March 7, 2022
Optimization of Left Ventricle Pace Maker Location Using Echo-Based Fluid-Structure Interaction ModelsLongling Fan, Jing Yao, Liang Wang, et al.Computer Modeling in Engineering & Sciences : CMES|September 20, 2011
Patient-Specific Carotid Plaque Progression Simulation Using 3D Meshless Generalized Finite Difference Models with Fluid-Structure Interactions Based on Serial In Vivo MRI DataChun Yang, Dalin Tang, Satya AtluriComputer Modeling in Engineering & Sciences : CMES|August 24, 2010
Three-Dimensional Carotid Plaque Progression Simulation Using Meshless Generalized Finite Difference Method Based on Multi-Year MRI Patient-Tracking DataChun Yang, Dalin Tang, Satya AtluriJournal of Biomechanical Engineering|July 13, 2011
In vivo serial MRI-based models and statistical methods to quantify sensitivity and specificity of mechanical predictors for carotid plaque rupture: location and beyondZheyang Wu, Chun Yang, Dalin TangJournal of Biomechanical Engineering|September 3, 2004
Effect of a lipid pool on stress/strain distributions in stenotic arteries: 3-D fluid-structure interactions (FSI) modelsDalin Tang, Chun Yang, Shunichi Kobayashi, et al.Progress in Pediatric Cardiology|February 24, 2011
Image-Based Patient-Specific Ventricle Models with Fluid-Structure Interaction for Cardiac Function Assessment and Surgical Design OptimizationDalin Tang, Chun Yang, Tal Geva, et al.Pageof 697