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In Silico Neuro-Oncology: Brownian Motion-Based Mathematical Treatment as a Potential Platform for Modeling the Infiltration of Glioma Cells into Normal Brain Tissue

机译:在计算机模拟神经肿瘤学中:基于布朗运动的数学治疗作为模拟脑胶质瘤细胞向正常脑组织浸润的潜在平台

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Intensive glioma tumor infiltration into the surrounding normal brain tissues is one of the most critical causes of glioma treatment failure. To quantitatively understand and mathematically simulate this phenomenon, several diffusion-based mathematical models have appeared in the literature. The majority of them ignore the anisotropic character of diffusion of glioma cells since availability of pertinent truly exploitable tomographic imaging data is limited. Aiming at enriching the anisotropy-enhanced glioma model weaponry so as to increase the potential of exploiting available tomographic imaging data, we propose a Brownian motion-based mathematical analysis that could serve as the basis for a simulation model estimating the infiltration of glioblastoma cells into the surrounding brain tissue. The analysis is based on clinical observations and exploits diffusion tensor imaging (DTI) data. Numerical simulations and suggestions for further elaboration are provided.
机译:密集的神经胶质瘤肿瘤浸润到周围正常脑组织中是神经胶质瘤治疗失败的最关键原因之一。为了定量地理解和数学模拟这种现象,文献中出现了几种基于扩散的数学模型。他们中的大多数忽略了胶质瘤细胞扩散的各向异性特征,因为相关的真正可利用的层析成像数据的可用性受到限制。为了丰富各向异性增强的神经胶质瘤模型武器,以增加利用现有的断层扫描成像数据的潜力,我们提出了一种基于布朗运动的数学分析,可以作为估计胶质母细胞瘤细胞浸润到胶质瘤的模拟模型的基础。周围的脑组织。该分析基于临床观察并利用扩散张量成像(DTI)数据。提供了数值模拟和进一步完善的建议。

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