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A model of neurovascular coupling and the BOLD response PART II

机译:神经血管耦合和大胆反应的模型第二部分

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A mathematical model is developed which describes a signalling mechanism of neurovascular coupling with a model of a pyramidal neuron and its corresponding fMRI BOLD response. In the first part of two papers (Part I) we described the integration of the neurovascular coupling unit extended to include a complex neuron model, which includes the important Na/K ATPase pump, with a model that provides a BOLD signal taking its input from the cerebral blood flow and the metabolic rate of oxygen consumption. We showed that this produced a viable signal in terms of initial dip, positive and negative BOLD signals. In this paper (PART II) our model predicts the variations of the BOLD response due to variations in neuronal activity and indicates that the BOLD signal could be used as an initial biomarker for neuronal dysfunction or variations in the perfusion of blood to the cerebral tissue. We have compared the simulated hypoxic BOLD response to experimental BOLD signals observed in the hippocampus during hypoxia showing good agreement. This approach of combined quantitative modelling of neurovascular coupling response and its BOLD response will enable more specific assessment of a brain region.
机译:建立了数学模型,该数学模型描述了与锥体神经元模型及其对应的fMRI BOLD响应的神经血管耦合的信号传导机制。在两篇论文的第一部分(第一部分)中,我们描述了神经血管耦合单元的集成,扩展到包括一个复杂的神经元模型,该模型包括重要的Na / K ATPase泵,该模型提供一个BOLD信号,其输入来自脑血流量和新陈代谢耗氧量。我们表明,就初始倾角,正和负大胆信号而言,这产生了一个可行的信号。在本文(PART II)中,我们的模型预测了由于神经元活动的变化而引起的BOLD反应的变化,并表明BOLD信号可以用作神经元功能障碍或血液向脑组织灌注变化的初始生物标志物。我们已经比较了在缺氧期间海马中观察到的实验性BOLD信号与模拟的缺氧性BOLD反应的良好一致性。这种结合定量建模的神经血管耦合反应及其BOLD反应的方法将使大脑区域的评估更加具体。

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