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Massively parallel simulations of neurovascular coupling with extracellular diffusion

机译:神经血管耦合与细胞外扩散的大规模并行模拟

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A numerical neurovascular coupling (NVC) model containing a vascular H-tree coupled with multiple neurovascular units (NVUs) comprising a cerebral tissue slice is extended via extracellular potassium diffusion, allowing for direct communication between adjacent NVUs. The model simulates NVC on the macro scale in a parallel environment using high performance computing. A localised neuronal stimulation results in vasodilation with a decreasing gradient in vessel radius from the stimulated to non-stimulated area. The dilation remains sufficiently spatially localised over larger time scales. During vasomotion, there is emergent behaviour in the form of waves of increased vessel radius moving towards the stimulated area. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过细胞外钾扩散扩展了包含与包含脑组织切片的多个神经血管单位(NVU)耦合的血管H树的神经血管数字(NVC)模型,从而允许相邻NVU之间直接通信。该模型使用高性能计算在并行环境中在宏尺度上模拟NVC。从刺激区域到非刺激区域,局部神经元刺激导致血管舒张,血管半径梯度减小。在较大的时间尺度上,扩张保持足够的空间局部性。在血管舒张过程中,以增加的血管半径波向受刺激区域移动的形式出现了紧急情况。 (C)2017 Elsevier B.V.保留所有权利。

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