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Physiological models comparison for the analysis of ASL FMRI data

机译:用于ASL FMRI数据分析的生理模型比较

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Physiological models have been proposed to describe the processes that underlie the link between neural and hemodynamic activity in the brain. Among these, the Balloon model describes the changes in blood flow, blood volume and oxygen concentration when an hemodynamic response is ensuing neural activation. Next, an hemodynamic model links these variables to the blood-oxygen-level-dependent (BOLD) effect. Taken together, these equations allow the precise modeling of the coupling between the cerebral blood flow and hemodynamic response. However, several competing versions of the hemodynamic model and different physiological parameters values have been described in the literature. In this work, we analyse Arterial Spin Labelling (ASL) functional Magnetic Resonance Imaging (fMRI) data, which contains both perfusion and hemodynamic effects, to compare the impact of different settings in the coupling between blood flow and hemodynamic response.
机译:已经提出了生理模型来描述大脑中神经和血液动力学活动之间联系的基础过程。在这些模型中,气球模型描述了当血液动力学反应引起神经激活时血流量,血容量和氧气浓度的变化。接下来,血液动力学模型将这些变量与血氧水平依赖性(BOLD)效应联系起来。综合起来,这些方程式可以对大脑血流和血液动力学反应之间的耦合进行精确建模。然而,在文献中已经描述了血液动力学模型的几个竞争版本和不同的生理参数值。在这项工作中,我们分析了动脉自旋标记(ASL)功能的磁共振成像(fMRI)数据,其中包含灌注和血液动力学效应,以比较不同设置对血流和血液动力学响应之间耦合的影响。

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