ABSTRACT We present recent results aiming at affording faster and error-controlled simulations of multi scale phenomena including fracture of heterogeneous materials and cutting of biological tissue. In a second part, we describe methodologies to isolate the user from the burden of mesh generation and regeneration as moving boundaries evolve. Results include advances in implicit boundary finite elements, (enriched) isogeometric extended boundary elements/finite element methods for multi-crack propagation and an asynchronous GPU/CPU method for contact and cutting of heterogeneous materials in real-time with applications to surgical simulation. ABOUT THE PRESENTER In 1999, Stéphane Bordas joined a joint graduate programme of the French In...
Interactive surgery simulations have conflicting requirements of speed and accuracy. In this paper ...
International audienceVirtual cutting of deformable objects is at thecore of many applications in in...
La découpe virtuelle d'objets déformables est au coeur de nombreuses applications pour la simulation...
peer reviewedThis paper presents a numerical method for interactive (real-time) simulations, which c...
International audienceThe complexity of most surgical models has not allowed interactive simulations...
Surgery is a complex practice whose positive outcome relies heavily on the experience of surgeons an...
In this seminar we consider the problem of constructing a numerical method particularly well suited ...
Physically based deformable models have become ubiquitous in computer graphics. It allow to syntheti...
Special Issue on Biomechanical Modelling of Soft Tissue MotionInternational audienceA new approach f...
Cette thèse consiste à explorer une nouvelle approche pour la simulation d'objets flexibles par la m...
We present a collection of embedded methods to solve a variety of scientific computing problems in b...
It has been envisaged that advances in computing and engineering technologies could extend surgeons’...
Interactive surgery simulations have conflicting requirements of speed and accuracy. In this paper ...
International audienceVirtual cutting of deformable objects is at thecore of many applications in in...
La découpe virtuelle d'objets déformables est au coeur de nombreuses applications pour la simulation...
peer reviewedThis paper presents a numerical method for interactive (real-time) simulations, which c...
International audienceThe complexity of most surgical models has not allowed interactive simulations...
Surgery is a complex practice whose positive outcome relies heavily on the experience of surgeons an...
In this seminar we consider the problem of constructing a numerical method particularly well suited ...
Physically based deformable models have become ubiquitous in computer graphics. It allow to syntheti...
Special Issue on Biomechanical Modelling of Soft Tissue MotionInternational audienceA new approach f...
Cette thèse consiste à explorer une nouvelle approche pour la simulation d'objets flexibles par la m...
We present a collection of embedded methods to solve a variety of scientific computing problems in b...
It has been envisaged that advances in computing and engineering technologies could extend surgeons’...
Interactive surgery simulations have conflicting requirements of speed and accuracy. In this paper ...
International audienceVirtual cutting of deformable objects is at thecore of many applications in in...
La découpe virtuelle d'objets déformables est au coeur de nombreuses applications pour la simulation...