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A mathematical model of overall cerebral blood flow regulation in the rat

机译:大鼠整体脑血流调节的数学模型

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摘要

A mathematical model of the cerebrovascular regulatory system in the rat is presented. The model, a generalization of a previous one, includes the reactivity of proximal segments of the cerebrovascular bed and the neurogenic and myogenic feedback regulatory mechanisms besides the action of chemical regulatory factors. The model is used to analyze the interaction of mechanisms regulating cerebral blood flow in several conditions of physiological importance. A comparison of simulation results with recent experimental data shows that the model is able to produce 60-70% of the experimental regulatory capacity of the cerebrovascular bed. However, some relevant discrepancies still exist between the model and the experimental results, especially as regards the dilatory capacity of small cerebral arterioles.
机译:提出了大鼠脑血管调节系统的数学模型。该模型是前一个模型的概括,除了化学调节因子的作用外,还包括脑血管床近端段的反应性以及神经源性和肌源性反馈调节机制。该模型用于分析在几种具有生理重要性的条件下调节脑血流的机制之间的相互作用。仿真结果与最新实验数据的比较表明,该模型能够产生60-70%的脑血管床实验调节能力。然而,模型和实验结果之间仍然存在一些相关的差异,特别是在小脑小动脉的扩张能力方面。

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