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Rule-Based Model of Vein Graft Remodeling
Minki Hwang
, Marc Garbey
, Scott A. Berceli
, Rongling Wu
, Zhihua Jiang
, Roger Tran-Son-Tay
Department of Public Health Sciences
Division of Biostatistics and Bioinformatics
Penn State Cancer Institute
Cancer Institute, Cancer Control
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Article
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peer-review
17
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Keyphrases
Smooth muscle Cells
100%
Cell Behavior
100%
Extracellular Matrix
100%
Graft Remodeling
100%
Rule-based Model
100%
Arterial System
100%
Vein Graft
100%
High Pressure
50%
Adaptation
50%
Shear Stress
50%
High Flow
50%
Cell Matrix
50%
Global Change
50%
Model Prediction
50%
Modeling Method
50%
Mechanistic Understanding
50%
In Vivo Experiment
50%
Model Validation
50%
Intima
50%
Final Model
50%
Complex Geometry
50%
Hemodynamic Forces
50%
Monocytes
50%
Computational Approach
50%
Matrix Elements
50%
Physical Behavior
50%
Model-driven Development
50%
Stenosis
50%
Two Dimensional Model
50%
Cellular Interactions
50%
Wall Thinning
50%
Local Hemodynamics
50%
Physical State
50%
Shear Stress Pattern
50%
Wall Tension
50%
Wall Expansion
50%
Molecular Behavior
50%
Grid System
50%
Monocyte Infiltration
50%
Behavior Rule
50%
Tissue Architecture
50%
Extracellular Matrix Deposition
50%
Shear Wall
50%
Vein Graft Failure
50%
Extracellular Interactions
50%
Arterial Bypass
50%
Engineering
Grafts
100%
Monocyte
50%
Simulation Result
25%
Two Dimensional
25%
One Dimensional
25%
Good Agreement
25%
Model Prediction
25%
Hemodynamic Force
25%
Physical Behavior
25%
Dimensional Model
25%
Matrix Element
25%
Grid System
25%