首页> 外文会议>Conference on image processing >Biomechanically based simulation of brain deformations for intraoperative image correction: coupling of elastic and fluid models
【24h】

Biomechanically based simulation of brain deformations for intraoperative image correction: coupling of elastic and fluid models

机译:基于生物力学基于术中脑内图像校正的脑变形模拟:弹性和流体模型的耦​​合

获取原文

摘要

In order to improve the accuracy of image-guided neurosurgery, different biomechanical models have been developed to correct preoperative images w.r.t. intraoperative changes like brain shift or tumor resection. All existing biomechanical models simulate different anatomical structures by using either appropriate boundary conditions or by spatially varying material parameter values, while assuming the same physical model for all anatomical structures. In general, this leads to physically implausible results, especially in the case of adjacent elastic and fluid structures. Therefore, we propose a new approach which allows to couple different physical models. In our case, we simulate rigid, elastic, and fluid regions by using the appropriate physical description for each material, namely either the Navier equation or the Stokes equation. To solve the resulting differential equations, we derive a linear matrix system for each region by applying the finite element method (FEM). Thereafter, the linear matrix systems are linked together, ending up with one overall linear matrix system. Our approach has been tested using synthetic as well as tomographic images. It turns out from experiments, that the integrated treatment of rigid, elastic, and fluid regions significantly improves the prediction results in comparison to a pure linear elastic model.
机译:为了提高图像引导神经外科手术的精确度,不同的生物力学模型已经发展到术前正确的图像w.r.t.术中的变化像脑移位或肿瘤切除术。所有现有的生物力学模型通过使用适当的边界条件或通过在空间上变化的材料参数值,同时假设对于所有的解剖结构相同的物理模型模拟不同的解剖结构。一般情况下,这会导致物理上不真实的结果,特别是在相邻的弹性和流体结构的情况下。因此,我们提出了一种新的方法,它允许几个不同的物理模型。在我们的情况下,我们通过使用适当的物理描述对于每种材料,即或者纳维方程或Stokes方程模拟刚性的,弹性的,并且流体的区域。为了解决所得的微分方程,我们通过应用有限元法(FEM)导出线性矩阵系统中为每个区域。此后,线性矩阵系统链接在一起,其中一个整体线性矩阵系统结束了。我们的方法已经使用合成以及断层图像进行测试。它从实验结果证明,该刚性的,弹性的,并且流体的区域的综合处理显著改善比较预测结果与纯线性弹性模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号