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首页> 外文期刊>IEEE Transactions on Medical Imaging >Realistic simulation of the 3-D growth of brain tumors in MR images coupling diffusion with biomechanical deformation
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Realistic simulation of the 3-D growth of brain tumors in MR images coupling diffusion with biomechanical deformation

机译:MR图像中扩散与生物力学变形耦合的脑肿瘤3-D生长的现实模拟

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We propose a new model to simulate the three-dimensional (3-D) growth of glioblastomas multiforma (GBMs), the most aggressive glial tumors. The GBM speed of growth depends on the invaded tissue: faster in white than in gray matter, it is stopped by the dura or the ventricles. These different structures are introduced into the model using an atlas matching technique. The atlas includes both the segmentations of anatomical structures and diffusion information in white matter fibers. We use the finite element method (FEM) to simulate the invasion of the GBM in the brain parenchyma and its mechanical interaction with the invaded structures (mass effect). Depending on the considered tissue, the former effect is modeled with a reaction-diffusion or a Gompertz equation, while the latter is based on a linear elastic brain constitutive equation. In addition, we propose a new coupling equation taking into account the mechanical influence of the tumor cells on the invaded tissues. The tumor growth simulation is assessed by comparing the in-silico GBM growth with the real growth observed on two magnetic resonance images (MRIs) of a patient acquired with 6 mo difference. Results show the feasibility of this new conceptual approach and justifies its further evaluation.
机译:我们提出了一个新模型来模拟胶质母细胞瘤(GBMs),这是最具侵袭性的胶质瘤,在三维(3-D)上生长。 GBM的生长速度取决于所侵入的组织:白色的速度快于灰色的速度,它被硬脑膜或心室所阻止。使用图集匹配技术将这些不同的结构引入模型。该图集既包括解剖结构的分割,又包括白质纤维中的扩散信息。我们使用有限元方法(FEM)来模拟GBM在脑实质中的侵袭及其与受侵袭结构的机械相互作用(质量效应)。根据所考虑的组织,前者的效果可通过反应扩散或Gompertz方程建模,而后者则基于线性弹性脑本构方程。此外,我们提出了一个新的耦合方程,其中考虑了肿瘤细胞对侵入组织的机械影响。通过比较计算机内GBM的生长与在以6 mo差异采集的患者的两个磁共振图像(MRI)上观察到的实际生长,可以评估肿瘤的生长模拟。结果表明了这种新概念方法的可行性,并证明了其进一步的评估合理性。

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