...
首页> 外文期刊>Communications in Numerical Methods in Engineering >Biomechanical modeling and computer simulation of the brain during neurosurgery
【24h】

Biomechanical modeling and computer simulation of the brain during neurosurgery

机译:神经外科手术过程中大脑的生物力学建模和计算机模拟

获取原文
获取原文并翻译 | 示例
           

摘要

Computational biomechanics of the brain for neurosurgery is an emerging area of research recently gaining in importance and practical applications. This review paper presents the contributions of the Intelligent Systems for Medicine Laboratory and its collaborators to this field, discussing the modeling approaches adopted and the methods developed for obtaining the numerical solutions. We adopt a physics-based modeling approach and describe the brain deformation in mechanical terms (such as displacements, strains, and stresses), which can be computed using a biomechanical model, by solving a continuum mechanics problem. We present our modeling approaches related to geometry creation, boundary conditions, loading, and material properties. From the point of view of solution methods, we advocate the use of fully nonlinear modeling approaches, capable of capturing very large deformations and nonlinear material behavior. We discuss finite element and meshless domain discretization, the use of the total Lagrangian formulation of continuum mechanics, and explicit time integration for solving both time-accurate and steady-state problems. We present the methods developed for handling contacts and for warping 3D medical images using the results of our simulations. We present two examples to showcase these methods: brain shift estimation for image registration and brain deformation computation for neuronavigation in epilepsy treatment.
机译:用于神经外科手术的大脑计算生物力学是近来新兴的研究领域,其重要性和实际应用日益广泛。本文介绍了医学实验室智能系统及其合作者对该领域的贡献,讨论了采用的建模方法和为获得数值解而开发的方法。我们采用基于物理学的建模方法,并以机械术语(例如位移,应变和应力)描述大脑变形,可以使用生物力学模型通过解决连续力学问题来计算大脑变形。我们介绍了与几何图形创建,边界条件,载荷和材料属性有关的建模方法。从求解方法的角度来看,我们主张使用完全非线性的建模方法,该方法能够捕获非常大的变形和非线性材料行为。我们讨论了有限元和无网格域离散化,连续力学总拉格朗日公式的使用以及用于解决时间精确和稳态问题的显式时间积分。我们使用仿真结果介绍开发用于处理联系人和使3D医学图像变形的方法。我们提供了两个示例来展示这些方法:用于图像配准的脑移动估计和用于癫痫治疗中的神经导航的脑变形计算。

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