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XFEM-Based Modeling of Successive Resections for Preoperative Image Updating

机译:基于XFEM的术前图像更新的连续切除模型

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摘要

We present a new method for modeling organ deformations due to successive resections. We use a biomechanical model of the organ, compute its volume-displacement solution based on the eXtended Finite Element Method (XFEM). The key feature of XFEM is that material discontinuities induced by every new resection can be handled without remeshing or mesh adaptation, as would be required by the conventional Finite Element Method (FEM). We focus on the application of preoperative image updating for image-guided surgery. Proof-of-concept demonstrations are shown for synthetic and real data in the context of neurosurgery.
机译:我们提出了一种用于模拟由于连续切除而引起的器官变形的新方法。我们使用器官的生物力学模型,根据扩展有限元方法(XFEM)计算其体积位移解。 XFEM的关键特征在于,无需像传统的有限元方法(FEM)那样就可以在不重新网格化或网格自适应的情况下处理每次新切除所引起的材料间断。我们专注于术前图像更新在图像引导手术中的应用。针对神经外科手术中的合成数据和真实数据,显示了概念验证演示。

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