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An Adaptive Landmark Scheme for Modeling Brain Deformation in Diffusion-Based Tumor Growth

机译:基于扩散的肿瘤生长中脑变形建模的自适应地标方案。

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In the present work a novel model to simulate mass effect caused by brain tumors is described. The progression of the tumor is modeled by means of a deterministic reaction-diffusion equation, which is discretized on a high-resolution voxel grid. This model does not inherently account for the mass effect of the tumor. Therefore, the computed tumor cell density is linked to a parametric deformation model.More precisely, this deformation model is based on a thin-plate spline interpolation strategy. Correspondence during the spatio-temporal progression of the tumor is defined by tracking landmarks, which are attached to the boundary of the gross tumor volume (GTV). To suppress deformation of rigid structures, i.e. the skull, fixed shielding landmarks are introduced into the model. An adaptive landmark scheme is used that allows for introducing new landmarks into the model as the tumor progresses.The present work has to be considered as a feasibility study. First qualitative results demonstrate the capability of the described method, which allows for plausibly approximating the mass effect caused by diffusive brain tumors.
机译:在本工作中,描述了一种新型模型来模拟由脑肿瘤引起的质量效应。借助于确定的反应扩散方程对肿瘤的进展进行建模,该方程在高分辨率的体素网格上离散化。该模型没有固有地解释肿瘤的质量效应。因此,计算出的肿瘤细胞密度与参数变形模型相关。 更准确地说,该变形模型基于薄板样条插值策略。肿瘤的时空发展过程中的对应关系是通过跟踪标志物来定义的,这些标志物附着在肿瘤总体积(GTV)的边界上。为了抑制刚性结构(即头骨)的变形,将固定的屏蔽界标引入模型中。使用自适应地标方案,该方案允许随着肿瘤的进展将新的地标引入模型中。 目前的工作必须被视为一项可行性研究。第一定性结果证明了所描述方法的能力,该方法可以合理地近似由弥散性脑肿瘤引起的质量效应。

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