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Analysis of fMRI Data using the Complex Systems Approach

机译:使用复杂系统方法分析FMRI数据

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Physiological and biological systems can be characterized as complex processes whose dynamics are constantly being influenced by nonlinear interactions. The outputs of these systems correspond to different modes of reaction due to dynamic relationships that are established between components of the system, perturbations from the external environment and changes that occur at physiological levels in the body. In this work, recent advances in the field of nonlinear dynamics are applied to fMRI data to examine the spatio-temporal properties of BOLD signal during a working memory task completion. Two groups of human subjects, one affected by schizophrenia and healthy controls, were imaged during the task completion. Recurrence properties were extracted from the time series of the most relevant voxels, using the Recurrence Plots (RP) and the Recurrence Quantitative Analysis (RQA). The purpose of the paper is to perform a description of the functional states, as well as to capture differences (if any) between the groups. Results are still preliminary but the methodology applied has margin of improvements.
机译:生理和生物学系统的特征可以作为复杂的过程,其动态不断受到非线性相互作用的影响。这些系统的输出对应于由于系统的组件之间建立的动态关系,从外部环境之间的扰动和身体生理水平发生的变化产生的不同反应模式。在这项工作中,将非线性动力学领域的最近进步应用于FMRI数据,以检查工作存储器任务完成期间粗体信号的时空性质。两组人类受试者,受精神分裂症影响的人类和健康对照组,在任务完成期间成像。使用复发图(RP)和复发定量分析(RQA)从最相关体素的时间序列中提取复发性质。本文的目的是执行功能状态的描述,以及捕获组之间的差异(如果有的话)。结果仍然是初步但应用的方法具有改进的余量。

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