Effective equations for anisotropic glioma spread with proliferation: a multiscale approach and comparisons with previous settings

Christian Engwer;Alexander Hunt;Christina Surulescu
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引用次数: 36

Abstract

Glioma is a common type of primary brain tumour, with a strongly invasive potential, often exhibiting non-uniform, highly irregular growth. This makes it difficult to assess the degree of extent of the tumour, hence bringing about a supplementary challenge for the treatment. It is therefore necessary to understand the migratory behaviour of glioma in greater detail. In this paper, we propose a multiscale model for glioma growth and migration. Our model couples the microscale dynamics (reduced to the binding of surface receptors to the surrounding tissue) with a kinetic transport equation for the cell density on the mesoscopic level of individual cells. On the latter scale, we also include the proliferation of tumour cells via effects of interaction with the tissue. An adequate parabolic scaling yields a convection–diffusion–reaction equation, for which the coefficients can be explicitly determined from the information about the tissue obtained by diffusion tensor imaging (DTI). Numerical simulations relying on DTI measurements confirm the biological findings that glioma spread along white matter tracts.
各向异性胶质瘤扩散与增殖的有效方程:多尺度方法和与先前设置的比较
胶质瘤是一种常见的原发性脑肿瘤,具有很强的侵袭性,通常表现为不均匀、高度不规则的生长。这使得很难评估肿瘤的程度,因此给治疗带来了补充挑战。因此,有必要更详细地了解胶质瘤的迁移行为。本文提出了胶质瘤生长和迁移的多尺度模型。我们的模型将微观尺度动力学(减少到表面受体与周围组织的结合)与单个细胞介观水平上的细胞密度动力学运输方程耦合在一起。在后一种尺度上,我们还包括肿瘤细胞通过与组织相互作用的影响而增殖。充分的抛物标度产生对流-扩散-反应方程,其系数可以根据扩散张量成像(DTI)获得的组织信息显式确定。依靠DTI测量的数值模拟证实了神经胶质瘤沿白质束扩散的生物学发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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