Publication: Quasi‐non‐linear deformation modeling of a human liver based on artificial and experimental data
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Wiley
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AbstractBackgroundResearchers working on error‐prevention theories have shown that the use of replica models within simulation systems has improved operating skills, resulting in better patient outcomes.MethodsThis study aims to provide material test data specifically for a human liver to validate the accuracy of viscoelastic soft tissue models. This allows the validation of virtual surgery simulators by comparison with physical test data obtained from material tests on a viscoelastic silicone gel pad.ResultsThe results proved that stress behavior and relaxation curves of Aquaflex® experiment and FEM simulation are close if average liver response and respective material parameters and model are used.ConclusionsThe precise representation of manipulated tissues used in virtual surgery trainers involves the accurate characterization of mechanical properties of the tissue. Consequently, successful implementations of these mechanical properties in a mathematical model of the deforming organ are of major importance. Copyright © 2015 John Wiley & Sons, Ltd.
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The International Journal of Medical Robotics and Computer Assisted Surgery
ISSN
1478-5951
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CLOSED
Keywords
Deformable Models, Swine, Viscosity, Finite Element Analysis, Nonlinear Simulations, Viscoelasticity, Real-Time Simulation, Models, Biological, Soft Tissue, Elasticity, Silicone Gels, Material Coefficients, Liver, Indentation Experiment, Surgical Procedures, Operative, Animals, Humans, Computer Simulation, Stress, Mechanical