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Titlebook: Computational Biomechanics for Medicine; Models, Algorithms a Adam Wittek,Karol Miller,Poul M.F. Nielsen Conference proceedings 2013 Spring

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Efficient Suturing of Deformable Modelsn addition, a computationally efficient formulation of thread pulling is presented. These techniques are implemented and tested in a prototype system which allows for interactive simulation of suturing with high resolution models.
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Numeric Simulation of Fluid–Structure Interaction in the Aortic Arch root immediately distal of aortic valve to the junction of the renal arteries. The aortic wall was simplified as a shell structure and assumed to be supported by virtual springs with adjustable stiffness. A structural finite element analysis of the vessel wall and a finite volume-based computationa
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Patient-Specific Computational Models: Tools for Improving the Efficiency of Medical Compression Stos to the treatment of more severe forms such as acute venous ulceration. However, the pressure needed to achieve clinical benefit is a matter of debate. The purpose of this study was to examine the transmission of pressure within the soft tissues to improve current understanding of the mechanism of
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Intraoperative Damage Monitoring of Endoclamp Balloon Expansion Using Real-Time Finite Element Modelge provides significant benefits in terms of reducing trauma for the patient. This procedure, however, induces risks of damage to the aortic lumen by way of over-expansion of the balloon, exposing the aortic tissue to unsafe levels of loading. Accurate estimates of the induced stress and consequent
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3D Algorithm for Simulation of Soft Tissue Cuttingnear geometric and material behaviour exhibited by soft tissue but also due to the complexity of introducing the cutting-induced discontinuity. In most publications, the progressive surgical cutting is modelled by conventional finite element (FE) method, in which the high computational cost and erro
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