首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Experimentally constrained circuit model of cortical arteriolenetworks for understanding flow redistribution due to occlusion and neuralactivation
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Experimentally constrained circuit model of cortical arteriolenetworks for understanding flow redistribution due to occlusion and neuralactivation

机译:皮质小动脉的实验约束电路模型网络用于了解由于闭塞和神经引起的血流再分配激活

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摘要

Computations are described which estimate flows in all branches of the cortical surface arteriole network from two-photon excited fluorescence (2PEF) microscopy images which provide the network topology and, in selected branches red blood cell (RBC) speeds and lumen diameters. Validation is done by comparing the flow predicted by the model with experimentally measured flows and by comparing the predicted flow redistribution in the network due to single-vessel strokes with experimental observations. The model predicts that tissue is protected from RBC flow decreases caused by multiple occlusions of surface arterioles but not penetrating arterioles. The model can also be used to study flow rerouting due to vessel dilations and constrictions.
机译:描述了计算,该计算从提供网络拓扑结构的双光子激发荧光(2PEF)显微镜图像估计皮质表面小动脉网络的所有分支中的流量,并在选定的分支中估计红细胞(RBC)的速度和管腔直径。通过将模型预测的流量与实验测量的流量进行比较,并将单船行程引起的网络中的预测流量重新分布与实验观察结果进行比较,从而进行验证。该模型预测,可以保护组织免受由于表面小动脉的多次阻塞而不是穿透性小动脉引起的RBC流量减少的影响。该模型还可以用于研究由于血管扩张和收缩而引起的流量重新路由。

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