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Titlebook: Biomedical Simulation; 5th International Sy Fernando Bello,Stéphane Cotin Conference proceedings 2010 Springer-Verlag Berlin Heidelberg 201

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A Point-Based Simulation Framework for Minimally Invasive Surgeryents represented by particles in real-time. Additionally, a point-based smoothing method for contact feedback is proposed. Our framework could simulate complex surgical scenes in MIS simulation in a unified way, and improve the time efficiency of the entire system without loss of physics accuracy, as shown in our experiment results.
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A Shell Model for Real-Time Simulation of Intra-ocular Implant Deployments in a relatively simple and computationally efficient approach which was applied to the simulation of the lens deployment. This simulation also accounts for the complex contacts that take place during the injection phase.
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Endovascular Guidewire Flexibility Simulationly at the flexible end. The bending coefficients were determined by comparing of the behaviour of real guidewires in a transparent silicone rubber vascular phantom to that of virtual guidewires in the virtual representation of the phantom. As a result, our representation captures the required range of behaviour and enables accurate deformation.
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https://doi.org/10.1007/978-3-642-90985-6rther investigated on fresh calf brain tissue obtained from several animals. Tests were conducted on both grey and white matter. The simulation screenshots, compared with the experimental photos, are presented to demonstrate the results.
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Die allgemeinen Verwaltungsprinzipien the two-layer phantom is chosen with characteristics similar to a real artery. The harder inner layer imitates the intimal thickening. A balloon deployment testing machine, non-compliant balloons and a laser measurement unit were used in experiments.
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