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Titlebook: Computer Methods in Biomechanics and Biomedical Engineering II; Selected Papers from Wafa Skalli,Sébastien Laporte,Aurélie Benoit Conferenc

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https://doi.org/10.1007/3-540-34334-2that uses simulations with a Finite Element (FE) biomechanical model of the face in order for the surgeons to (1) predict how tensor threads mechanically interact with facial tissue and (2) visualize preoperatively in real-time the postoperative aesthetic appearance of the patient’s face using a Reduced Order Model of the FE model.
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https://doi.org/10.1007/3-540-34334-2compared with 0.50 N/mm at the proximal part. The result indicates a correlation of radial force with lumen diameter and shape. Additionally, the current study offers an analytical treatment model to evaluate the metal coverage ratio. Utilizing these models can also apply to other self-expanding braided stents.
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,Turbulente reaktive Strömungen,gical behavior of the . haemostatic sponge under the effect of hydration. Simulation was based on a thermoelastic model performed with finite element analysis to mimic the sponge behavior and reproduce experimental data.
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Biomechanical Simulation of Haemostatic Sponges for Sinus Lift Applicationgical behavior of the . haemostatic sponge under the effect of hydration. Simulation was based on a thermoelastic model performed with finite element analysis to mimic the sponge behavior and reproduce experimental data.
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Subject Specific Modeling for Lumbar Spine Surgery Complications Analysis: A Preliminary Case Reportnderstanding of underlying mechanisms, providing they are patient specific, specifically for geometry and loads. The aim of this study is to explore the ability of a FEM to explain mechanical complications of lumbar spine surgery. A preliminary study on a selected case was conducted..A lumbar spine
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